Basics Of Computer Networks Innovation

Basics Of Computer Networks Innovation

Basics of Computer Networks Innovation

Overview:
Computer networks facilitate communication between devices, allowing data exchange and resource sharing. Innovations in this field focus on enhancing speed, security, and accessibility.

Key Innovations:

  1. Cloud Networking: Enables on-demand access to resources and services over the internet.
  2. Software-Defined Networking (SDN): Provides centralized control over network resources, improving flexibility.
  3. IoT Integration: Connects everyday devices to the internet, creating smart environments.
  4. Enhanced Security Protocols: Innovations like zero-trust architecture protect against cyber threats.

Conclusion:
Continued innovation in computer networks is crucial for supporting emerging technologies and improving connectivity globally.

What is required Basics Of Computer Networks Innovation

Requirements for Basics of Computer Networks Innovation

  1. Understanding Network Fundamentals: Knowledge of protocols, architectures, and technologies that enable networking.
  2. Technological Infrastructure: Access to hardware (routers, switches, servers) and software tools for network management.
  3. Security Measures: Implementation of robust security protocols to protect data integrity and confidentiality.
  4. User Training: Educational programs to ensure users are proficient in network operations and troubleshooting.
  5. Research and Development: Ongoing innovation to adapt to emerging technologies and enhance network performance.

These components are essential for fostering innovation in computer networks.

Who is required Basics Of Computer Networks Innovation

  1. Network Engineers: Responsible for designing and maintaining network infrastructure.
  2. System Administrators: Manage and oversee network operations, ensuring smooth performance.
  3. Security Analysts: Protect networks from cyber threats and vulnerabilities.
  4. Educators and Trainers: Provide training and resources to users on network technologies.
  5. Researchers and Developers: Innovate new technologies and methodologies to enhance network efficiency.

These roles are essential for driving innovation and improving the functionality of computer networks.

When is required Basics Of Computer Networks Innovation

  1. Emerging Technologies: As new technologies, like IoT and AI, gain prominence, innovation in networking is crucial.
  2. Infrastructure Upgrades: Organizations need to upgrade their networks to support higher speeds and more devices.
  3. Security Threats: Innovations are required when addressing evolving cybersecurity threats and vulnerabilities.
  4. Scalability Needs: When businesses grow, their networking capabilities must adapt to increased demand and complexity.
  5. Regulatory Changes: New regulations may require updates to networking practices and technologies for compliance.

Overall, innovation is essential whenever there are shifts in technology, user needs, or security landscapes.

Where is required Basics Of Computer Networks Innovation

  1. Businesses: Companies of all sizes need innovative networking solutions to support operations and communications.
  2. Educational Institutions: Schools and universities require advanced networks for research, online learning, and administrative tasks.
  3. Healthcare Facilities: Hospitals need robust networks for patient management systems and telemedicine.
  4. Government Agencies: Public sector organizations use network innovations for secure communication and data sharing.
  5. Telecommunications Providers: Companies delivering internet services must continually innovate to enhance service quality and capacity.

Innovation is essential in any environment that relies on effective and secure communication.

How is required Basics Of Computer Networks Innovation

  1. Research and Development: Continuous exploration of new technologies and methodologies to improve networking.
  2. Training Programs: Implementing educational initiatives to enhance skills and knowledge about networking.
  3. Implementation of Advanced Protocols: Adopting new networking standards and protocols for improved performance.
  4. Integration of New Technologies: Combining innovations like cloud computing and IoT into existing network infrastructures.
  5. Regular Updates and Maintenance: Keeping network systems updated with the latest security features and performance enhancements.

These actions foster a robust and efficient networking environment.

Case Study on Basics Of Computer Networks Innovation

Case Study: Basics of Computer Networks Innovation

Title: Transforming University Networks for Enhanced Learning

Overview: A university implemented a high-speed, resilient network to support increased online course offerings. By integrating Wi-Fi 6 technology and cloud-based solutions, the institution improved connectivity for students and faculty, allowing seamless access to educational resources.

Results: Enhanced user experience, reduced downtime, and increased enrollment in online courses. The university’s ability to adapt quickly to changing educational needs showcased the importance of innovative networking solutions in modern education.

For more detailed insights, you can refer to various resources on network innovations in educational settings.

White Paper on Basics Of Computer Networks Innovation

Abstract:
This white paper explores the fundamental concepts of computer networks and the necessity for innovation in networking technology. It covers the evolution of networking protocols, the shift to cloud-based solutions, and the impact of emerging technologies such as IoT and AI on network architecture.

Key Points:

  1. Understanding Network Layers: Explanation of the OSI and TCP/IP models, emphasizing their roles in facilitating communication.
  2. Technological Advances: Overview of innovations like SDN (Software-Defined Networking) and NFV (Network Functions Virtualization).
  3. Security Challenges: Discussion on evolving security threats and the need for advanced solutions to safeguard networks.
  4. Future Trends: Insights into the future of networking, focusing on automation and AI-driven networks.

Conclusion:
To remain competitive and efficient, organizations must continuously innovate their networking strategies to meet the demands of a rapidly changing technological landscape.

For more detailed insights, you may consider further research into specific innovations and their applications in various sectors.

References

  1. ^ Ray, Partha Pratim (2018). “An Introduction to Dew Computing: Definition, Concept and Implications – IEEE Journals & Magazine”IEEE Access6: 723–737. doi:10.1109/ACCESS.2017.2775042ISSN 2169-3536S2CID 3324933.
  2. ^ Montazerolghaem, Ahmadreza; Yaghmaee, Mohammad Hossein; Leon-Garcia, Alberto (September 2020). “Green Cloud Multimedia Networking: NFV/SDN Based Energy-Efficient Resource Allocation”IEEE Transactions on Green Communications and Networking4 (3): 873–889. doi:10.1109/TGCN.2020.2982821ISSN 2473-2400S2CID 216188024Archived from the original on 2020-12-09. Retrieved 2020-12-06.
  3. ^ Wray, Jared (2014-02-27). “Where’s The Rub: Cloud Computing’s Hidden Costs”ForbesArchived from the original on 2014-07-14. Retrieved 2014-07-14.
  4. Jump up to:a b “Are rainy days ahead for cloud computing?”BBC News. 2024-06-27. Retrieved 2024-06-28.
  5. Jump up to:a b c d European Commission, Unleashing the Potential of Cloud Computing in Europe, COM(2012) 529 final, page 3, published 27 September 2012, accessed 26 April 2024
  6. Jump up to:a b c d e f g h i Mell, Peter; Timothy Grance (September 2011). The NIST Definition of Cloud Computing (Technical report). National Institute of Standards and Technology: U.S. Department of Commerce. doi:10.6028/NIST.SP.800-145. Special publication 800-145.
  7. ^ White, J. E. (1971). “Network Specifications for Remote Job Entry and Remote Job Output Retrieval at UCSB”tools.ietf.orgdoi:10.17487/RFC0105Archived from the original on 2016-03-30. Retrieved 2016-03-21.
  8. ^ Levy, Steven (April 1994). “Bill and Andy’s Excellent Adventure II” Archived 2015-10-02 at the Wayback MachineWired.
  9. ^ Mosco, Vincent (2015). To the Cloud: Big Data in a Turbulent World. Taylor & Francis. p. 15. ISBN 9781317250388.
  10. ^ “Announcing Amazon Elastic Compute Cloud (Amazon EC2) – beta”. 24 August 2006. Archived from the original on 13 August 2014. Retrieved 31 May 2014.
  11. ^ Qian, Ling; Lou, Zhigou; Du, Yujian; Gou, Leitao. “Cloud Computing: An Overview”. Retrieved 19 April 2021.
  12. ^ “Windows Azure General Availability”The Official Microsoft Blog. Microsoft. 2010-02-01. Archived from the original on 2014-05-11. Retrieved 2015-05-03.
  13. ^ “Announcing General Availability of AWS Outposts”Amazon Web Services, IncArchived from the original on 2021-01-21. Retrieved 2021-02-04.
  14. ^ “Remote work helps Zoom grow 169% in one year, posting $328.2M in Q1 revenue”TechCrunch. 2 June 2020. Archived from the original on 2023-01-17. Retrieved 2021-04-27.
  15. ^ “What is Cloud Computing?”Amazon Web Services. 2013-03-19. Archived from the original on 2013-03-22. Retrieved 2013-03-20.
  16. ^ Baburajan, Rajani (2011-08-24). “The Rising Cloud Storage Market Opportunity Strengthens Vendors”. It.tmcnet.com. Archived from the original on 2012-06-17. Retrieved 2011-12-02.
  17. ^ Oestreich, Ken (2010-11-15). “Converged Infrastructure”CTO Forum. Thectoforum.com. Archived from the original on 2012-01-13. Retrieved 2011-12-02.
  18. ^ Simpson, Ted; Jason Novak, Hands on Virtual Computing, 2017, ISBN 1337515744p. 451. Archived 2023-01-17 at the Wayback Machine
  19. ^ “Recession Is Good For Cloud Computing – Microsoft Agrees”. CloudAve. 2009-02-12. Archived from the original on 2010-08-14. Retrieved 2010-08-22.
  20. Jump up to:a b c d “Defining ‘Cloud Services’ and “Cloud Computing””. IDC. 2008-09-23. Archived from the original on 2010-07-22. Retrieved 2010-08-22.
  21. ^ “State of the Art | e-FISCAL project”www.efiscal.euArchived from the original on 2013-01-27. Retrieved 2012-04-19.
  22. ^ Farber, Dan (2008-06-25). “The new geek chic: Data centers”CNET News. Archived from the original on 2013-11-04. Retrieved 2010-08-22.
  23. ^ “Jeff Bezos’ Risky Bet”Business Week. Archived from the original on 2012-06-27. Retrieved 2008-08-21.
  24. ^ He, Sijin; Guo, L.; Guo, Y.; Ghanem, M. (June 2012). “Improving Resource Utilisation in the Cloud Environment Using Multivariate Probabilistic Models”. 2012 IEEE Fifth International Conference on Cloud Computing. 2012 2012 IEEE 5th International Conference on Cloud Computing (CLOUD). pp. 574–581. doi:10.1109/CLOUD.2012.66ISBN 978-1-4673-2892-0S2CID 15374752.
  25. ^ He, Qiang, et al. “Formulating Cost-Effective Monitoring Strategies for Service-based Systems.” (2013): 1–1.
  26. ^ King, Rachael (2008-08-04). “Cloud Computing: Small Companies Take Flight”Bloomberg BusinessWeek. Archived from the original on 2010-08-07. Retrieved 2010-08-22.
  27. Jump up to:a b Mao, Ming; M. Humphrey (2012). “A Performance Study on the VM Startup Time in the Cloud”. 2012 IEEE Fifth International Conference on Cloud Computing. p. 423. doi:10.1109/CLOUD.2012.103ISBN 978-1-4673-2892-0S2CID 1285357.
  28. ^ Bruneo, Dario; Distefano, Salvatore; Longo, Francesco; Puliafito, Antonio; Scarpa, Marco (2013). “Workload-Based Software Rejuvenation in Cloud Systems”. IEEE Transactions on Computers62 (6): 1072–1085. doi:10.1109/TC.2013.30S2CID 23981532.
  29. ^ Kuperberg, Michael; Herbst, Nikolas; Kistowski, Joakim Von; Reussner, Ralf (1 January 2011). Defining and Quantifying Elasticity of Resources in Cloud Computing and Scalable PlatformsKarlsruher Institut für Technologiedoi:10.5445/IR/1000023476 (inactive 1 November 2024). Archived from the original on 6 April 2013. Retrieved 12 December 2023.
  30. ^ “Economies of Cloud Scale Infrastructure”. Cloud Slam 2011. 13 May 2010. Archived from the original on 2021-10-27. Retrieved 13 May 2011.
  31. ^ He, Sijin; L. Guo; Y. Guo; C. Wu; M. Ghanem (March 2012). “Elastic Application Container: A Lightweight Approach for Cloud Resource Provisioning”. 2012 IEEE 26th International Conference on Advanced Information Networking and Applications. 2012 IEEE 26th International Conference on Advanced Information Networking and Applications (AINA). pp. 15–22. doi:10.1109/AINA.2012.74ISBN 978-1-4673-0714-7S2CID 4863927.
  32. ^ Marston, Sean; Li, Zhi; Bandyopadhyay, Subhajyoti; Zhang, Juheng; Ghalsasi, Anand (2011-04-01). “Cloud computing – The business perspective”. Decision Support Systems51 (1): 176–189. doi:10.1016/j.dss.2010.12.006.
  33. ^ Why Cloud computing scalability matters for business growth Archived 2021-07-09 at the Wayback Machine, Symphony Solutions, 2021
  34. ^ Nouri, Seyed; Han, Li; Srikumar, Venugopal; Wenxia, Guo; MingYun, He; Wenhong, Tian (2019). “Autonomic decentralized elasticity based on a reinforcement learning controller for cloud applications”. Future Generation Computer Systems94: 765–780. doi:10.1016/j.future.2018.11.049S2CID 59284268.
  35. ^ Mills, Elinor (2009-01-27). “Cloud computing security forecast: Clear skies”. CNET News. Archived from the original on 2020-01-28. Retrieved 2019-09-19.
  36. ^ Fundamentals of Software Architecture: An Engineering Approach. O’Reilly Media. 2020. ISBN 978-1492043454.
  37. Jump up to:a b Marko, Kurt; Bigelow, Stephen J. (10 Nov 2022). “The pros and cons of cloud computing explained”TechTarget.
  38. ^ Bratton, Benjamin H. (2015). The stack: on software and sovereignty. Software studies. Cambridge, Mass. London: MIT press. ISBN 978-0-262-02957-5.
  39. ^ Bridle, James (2019). New dark age: technology and the end of the future. Verso.
  40. ^ Shurma, Ramesh (8 Mar 2023). “The Hidden Costs Of Cloud Migration”Forbes.
  41. Jump up to:a b c Ryan, Mark D. (January 2011). “Cloud Computing Privacy Concerns on Our Doorstep”cacm.acm.orgArchived from the original on 2021-12-28. Retrieved 2021-05-21.
  42. ^ Indu, I.; Anand, P.M. Rubesh; Bhaskar, Vidhyacharan (August 1, 2018). “Identity and access management in cloud environment: Mechanisms and challenges”Engineering Science and Technology21 (4): 574–588. doi:10.1016/j.jestch.2018.05.010.
  43. Jump up to:a b “Google Drive, Dropbox, Box and iCloud Reach the Top 5 Cloud Storage Security Breaches List”psg.hitachi-solutions.com. Archived from the original on 2015-11-23. Retrieved 2015-11-22.
  44. ^ Maltais, Michelle (26 April 2012). “Who owns your stuff in the cloud?”Los Angeles TimesArchived from the original on 2013-01-20. Retrieved 2012-12-14.
  45. ^ “Security of virtualization, cloud computing divides IT and security pros”. Network World. 2010-02-22. Archived from the original on 2024-04-26. Retrieved 2010-08-22.
  46. ^ “The Bumpy Road to Private Clouds”. 2010-12-20. Archived from the original on 2014-10-15. Retrieved 8 October 2014.
  47. ^ Kanaker, Hasan; Karim, Nader Abdel; Awwad, Samer A. B.; Ismail, Nurul H. A.; Zraqou, Jamal; Ali, Abdulla M. F. Al (2022-12-20). “Trojan Horse Infection Detection in Cloud Based Environment Using Machine Learning”International Journal of Interactive Mobile Technologies16 (24): 81–106. doi:10.3991/ijim.v16i24.35763ISSN 1865-7923S2CID 254960874.
  48. ^ Duan, Yucong; Fu, Guohua; Zhou, Nianjun; Sun, Xiaobing; Narendra, Nanjangud; Hu, Bo (2015). “Everything as a Service (XaaS) on the Cloud: Origins, Current and Future Trends”. 2015 IEEE 8th International Conference on Cloud ComputingIEEE. pp. 621–628. doi:10.1109/CLOUD.2015.88ISBN 978-1-4673-7287-9S2CID 8201466.
  49. ^ Amies, Alex; Sluiman, Harm; Tong, Qiang Guo; Liu, Guo Ning (July 2012). “Infrastructure as a Service Cloud Concepts”Developing and Hosting Applications on the Cloud. IBM Press. ISBN 978-0-13-306684-5. Archived from the original on 2012-09-15. Retrieved 2012-07-19.
  50. ^ Nelson, Michael R. (2009). “The Cloud, the Crowd, and Public Policy”Issues in Science and Technology25 (4): 71–76. JSTOR 43314918Archived from the original on 2022-09-10. Retrieved 2022-09-10.
  51. ^ Boniface, M.; et al. (2010). Platform-as-a-Service Architecture for Real-Time Quality of Service Management in Clouds. 5th International Conference on Internet and Web Applications and Services (ICIW). Barcelona, Spain: IEEE. pp. 155–160. doi:10.1109/ICIW.2010.91.
  52. ^ “Integration Platform as a Service (iPaaS)”Gartner IT Glossary. Gartner. Archived from the original on 2015-07-29. Retrieved 2015-07-20.
  53. ^ Gartner; Massimo Pezzini; Paolo Malinverno; Eric Thoo. “Gartner Reference Model for Integration PaaS”Archived from the original on 1 July 2013. Retrieved 16 January 2013.
  54. ^ Loraine Lawson (3 April 2015). “IT Business Edge”Archived from the original on 7 July 2015. Retrieved 6 July 2015.
  55. ^ Enterprise CIO Forum; Gabriel Lowy. “The Value of Data Platform-as-a-Service (dPaaS)”. Archived from the original on 19 April 2015. Retrieved 6 July 2015.
  56. ^ “Definition of: SaaS”PC Magazine EncyclopediaZiff DavisArchived from the original on 14 July 2014. Retrieved 14 May 2014.
  57. ^ Hamdaqa, Mohammad. A Reference Model for Developing Cloud Applications (PDF)Archived (PDF) from the original on 2012-10-05. Retrieved 2012-05-23.
  58. ^ Chou, Timothy. Introduction to Cloud Computing: Business & TechnologyArchived from the original on 2016-05-05. Retrieved 2017-09-09.
  59. ^ “HVD: the cloud’s silver lining” (PDF). Intrinsic Technology. Archived from the original (PDF) on 2 October 2012. Retrieved 30 August 2012.
  60. ^ Sun, Yunchuan; Zhang, Junsheng; Xiong, Yongping; Zhu, Guangyu (2014-07-01). “Data Security and Privacy in Cloud Computing”International Journal of Distributed Sensor Networks10 (7): 190903. doi:10.1155/2014/190903ISSN 1550-1477S2CID 13213544.
  61. ^ “Use OneDrive with Office”Microsoft SupportArchived from the original on 2022-10-15. Retrieved 2022-10-15.
  62. ^ Carney, Michael (2013-06-24). “AnyPresence partners with Heroku to beef up its enterprise mBaaS offering”PandoDaily. Archived from the original on 2013-06-27. Retrieved 24 June 2013.
  63. ^ Alex Williams (11 October 2012). “Kii Cloud Opens Doors For Mobile Developer Platform With 25 Million End Users”TechCrunchArchived from the original on 15 October 2012. Retrieved 16 October 2012.
  64. ^ Aaron Tan (30 September 2012). “FatFractal ups the ante in backend-as-a-service market”Techgoondu.comArchived from the original on 10 October 2012. Retrieved 16 October 2012.
  65. ^ Dan Rowinski (9 November 2011). “Mobile Backend As A Service Parse Raises $5.5 Million in Series A Funding”ReadWriteArchived from the original on 1 November 2012. Retrieved 23 October 2012.
  66. ^ Pankaj Mishra (7 January 2014). “MobStac Raises $2 Million in Series B To Help Brands Leverage Mobile Commerce”TechCrunchArchived from the original on 15 May 2014. Retrieved 22 May 2014.
  67. ^ “built.io Is Building an Enterprise MBaas Platform for IoT”programmableweb. 2014-03-03. Archived from the original on 2014-03-06. Retrieved 3 March 2014.
  68. Jump up to:a b Miller, Ron (24 Nov 2015). “AWS Lambda Makes Serverless Applications A Reality”TechCrunchArchived from the original on 23 May 2019. Retrieved 10 July 2016.
  69. ^ “bliki: Serverless”martinfowler.comArchived from the original on 2018-05-05. Retrieved 2018-05-04.
  70. ^ Sbarski, Peter (2017-05-04). Serverless Architectures on AWS: With examples using AWS Lambda (1st ed.). Manning Publications. ISBN 9781617293825.
  71. ^ McManus, Sean (June 27, 2024). “Are rainy days ahead for cloud computing?”www.bbc.com. Retrieved 30 June 2024.
  72. ^ Linthicum, David (9 February 2024). “Cloud repatriation: Why companies are leaving the cloud”InfoWorld. Retrieved 30 June 2024.
  73. ^ “Self-Run Private Cloud Computing Solution – GovConnection”govconnection.com. 2014. Archived from the original on April 6, 2014. Retrieved April 15, 2014.
  74. ^ “Private Clouds Take Shape – Services – Business services – Informationweek”. 2012-09-09. Archived from the original on 2012-09-09.
  75. ^ Haff, Gordon (2009-01-27). “Just don’t call them private clouds”. CNET News. Archived from the original on 2014-12-27. Retrieved 2010-08-22.
  76. ^ “There’s No Such Thing As A Private Cloud – Cloud-computing -“. 2013-01-26. Archived from the original on 2013-01-26.
  77. ^ Rouse, Margaret. “What is public cloud?”. Definition from Whatis.com. Archived from the original on 16 October 2014. Retrieved 12 October 2014.
  78. ^ “FastConnect | Oracle Cloud Infrastructure”cloud.oracle.comArchived from the original on 2017-11-15. Retrieved 2017-11-15.
  79. ^ Schmidt, Rainer; Möhring, Michael; Keller, Barbara (2017). “Customer Relationship Management in a Public Cloud environment – Key influencing factors for European enterprises”HICSS. Proceedings of the 50th Hawaii International Conference on System Sciences (2017). doi:10.24251/HICSS.2017.513hdl:10125/41673ISBN 9780998133102.
  80. ^ “What is hybrid cloud? – Definition from WhatIs.com”SearchCloudComputingArchived from the original on 2019-07-16. Retrieved 2019-08-10.
  81. ^ Butler, Brandon (2017-10-17). “What is hybrid cloud computing? The benefits of mixing private and public cloud services”Network WorldArchived from the original on 2019-08-11. Retrieved 2019-08-11.
  82. ^ “Mind the Gap: Here Comes Hybrid Cloud – Thomas Bittman”Thomas Bittman. 24 September 2012. Archived from the original on 17 April 2015. Retrieved 22 April 2015.
  83. ^ “Business Intelligence Takes to Cloud for Small Businesses”. CIO.com. 2014-06-04. Archived from the original on 2014-06-07. Retrieved 2014-06-04.
  84. ^ Désiré Athow (24 August 2014). “Hybrid cloud: is it right for your business?”TechRadarArchived from the original on 7 July 2017. Retrieved 22 April 2015.
  85. ^ Metzler, Jim; Taylor, Steve. (2010-08-23) “Cloud computing: Reality vs. fiction” Archived 2013-06-19 at the Wayback Machine, Network World.
  86. ^ Rouse, Margaret. “Definition: Cloudbursting” Archived 2013-03-19 at the Wayback Machine, May 2011. SearchCloudComputing.com.
  87. ^ “How Cloudbursting “Rightsizes” the Data Center”. 2012-06-22. Archived from the original on 2016-10-19. Retrieved 2016-10-19.
  88. ^ Cunsolo, Vincenzo D.; Distefano, Salvatore; Puliafito, Antonio; Scarpa, Marco (2009). “Volunteer Computing and Desktop Cloud: The Cloud@Home Paradigm”. 2009 Eighth IEEE International Symposium on Network Computing and Applications. pp. 134–139. doi:10.1109/NCA.2009.41S2CID 15848602.
  89. ^ Rouse, Margaret. “What is a multi-cloud strategy”. SearchCloudApplications. Archived from the original on 5 July 2014. Retrieved 3 July 2014.
  90. ^ King, Rachel. “Pivotal’s head of products: We’re moving to a multi-cloud world”ZDnetArchived from the original on 4 July 2014. Retrieved 3 July 2014.
  91. ^ Multcloud manage multiple cloud accounts Archived 2023-01-17 at the Wayback Machine. Retrieved on 06 August 2014
  92. ^ Gall, Richard (2018-05-16). “Polycloud: a better alternative to cloud agnosticism”Packt HubArchived from the original on 2019-11-11. Retrieved 2019-11-11.
  93. ^ Roh, Lucas (31 August 2016). “Is the Cloud Finally Ready for Big Data?”dataconomy.comArchived from the original on 30 January 2018. Retrieved 29 January 2018.
  94. ^ Yang, C.; Huang, Q.; Li, Z.; Liu, K.; Hu, F. (2017). “Big Data and cloud computing: innovation opportunities and challenges”International Journal of Digital Earth10 (1): 13–53. Bibcode:2017IJDE…10…13Ydoi:10.1080/17538947.2016.1239771S2CID 8053067.
  95. ^ Netto, M.; Calheiros, R.; Rodrigues, E.; Cunha, R.; Buyya, R. (2018). “HPC Cloud for Scientific and Business Applications: Taxonomy, Vision, and Research Challenges”. ACM Computing Surveys51 (1): 8:1–8:29. arXiv:1710.08731doi:10.1145/3150224S2CID 3604131.
  96. ^ Eadline, Douglas. “Moving HPC to the Cloud”Admin MagazineArchived from the original on 30 March 2019. Retrieved 30 March 2019.
  97. ^ “Penguin Computing On Demand (POD)”Archived from the original on 9 March 2018. Retrieved 23 January 2018.
  98. ^ Niccolai, James (11 August 2009). “Penguin Puts High-performance Computing in the Cloud”PCWorld. IDG Consumer & SMB. Archived from the original on 19 August 2016. Retrieved 6 June 2016.
  99. ^ “HPC in AWS”Archived from the original on 1 December 2017. Retrieved 23 January 2018.
  100. ^ “Building GrepTheWeb in the Cloud, Part 1: Cloud Architectures”. Developer.amazonwebservices.com. Archived from the original on 5 May 2009. Retrieved 22 August 2010.
  101. ^ “IDC Forecasts Worldwide “Whole Cloud” Spending to Reach $1.3 Trillion by 2025″. Idc.com. 2021-09-14. Archived from the original on 2022-07-29. Retrieved 2022-07-30.
  102. ^ “Gartner Forecasts Worldwide Public Cloud End-User Spending to Reach Nearly $500 Billion in 2022”Archived from the original on 2022-07-25. Retrieved 2022-07-25.
  103. ^ “Cloud’s trillion-dollar prize is up for grabs”. McKinsey. Archived from the original on 2022-07-25. Retrieved 2022-07-30.
  104. ^ “Gartner Says More Than Half of Enterprise IT Spending in Key Market Segments Will Shift to the Cloud by 2025”Archived from the original on 2022-07-25. Retrieved 2022-07-25.
  105. Jump up to:a b c HAMDAQA, Mohammad (2012). Cloud Computing Uncovered: A Research Landscape (PDF). Elsevier Press. pp. 41–85. ISBN 978-0-12-396535-6Archived (PDF) from the original on 2013-06-19. Retrieved 2013-03-19.
  106. ^ “Distributed Application Architecture” (PDF). Sun Microsystem. Archived (PDF) from the original on 2011-04-06. Retrieved 2009-06-16.
  107. ^ Vaquero, Luis M.; Rodero-Merino, Luis; Caceres, Juan; Lindner, Maik (December 2008). “A break in the clouds: Towards a cloud definition”ACM SIGCOMM Computer Communication Review39 (1): 50–55. doi:10.1145/1496091.1496100S2CID 207171174.
  108. ^ Danielson, Krissi (2008-03-26). “Distinguishing Cloud Computing from Utility Computing”. Ebizq.net. Archived from the original on 2017-11-10. Retrieved 2010-08-22.
  109. ^ Cui, Yan (2020). Serverless Architectures on AWS (2nd ed.). Manning. ISBN 978-1617295423.
  1.  Benzekki, Kamal; El Fergougui, Abdeslam; Elbelrhiti Elalaoui, Abdelbaki (2016). “Software-defined networking (SDN): A survey”. Security and Communication Networks9 (18): 5803–5833. doi:10.1002/sec.1737.
  2. ^ Montazerolghaem, Ahmadreza (2020-07-13). “Software-defined load-balanced data center: design, implementation and performance analysis”Cluster Computing24 (2): 591–610. doi:10.1007/s10586-020-03134-xISSN 1386-7857S2CID 220490312.
  3. ^ Montazerolghaem, Ahmadreza (2021). “Software-defined Internet of Multimedia Things: Energy-efficient and Load-balanced Resource Management”IEEE Internet of Things Journal9 (3): 2432–2442. doi:10.1109/JIOT.2021.3095237ISSN 2327-4662S2CID 237801052.
  4. ^ “Software-defined networking is not OpenFlow, companies proclaim”searchsdn.techtarget.com.
  5. ^ “InCNTRE’s OpenFlow SDN testing lab works toward certified SDN product”. 10 February 2016.
  6. ^ “Predicting SD-WAN Adoption”. gartner.com. 2015-12-15. Retrieved 2016-06-27.
  7. ^ L. Yang (Intel Corp.), R. Dantu (Univ. of North Texas), T. Anderson (Intel Corp.) & R. Gopal (Nokia.) (April 2004). Forwarding and Control Element Separation (ForCES) FrameworkInternet Engineering Task Forcedoi:10.17487/RFC3746RFC 3746.
  8. ^ T. V. Lakshman, T. Nandagopal, R. Ramjee, K. Sabnani, and T. Woo (Nov 2004). “The SoftRouter Architecture” (PDF).
  9. ^ J. Salim (Znyx Networks), H. Khosravi (Intel), A. Kleen (Suse), and A. Kuznetsov (INR/Swsoft) (July 2003). “Linux Netlink as an IP Services Protocol”doi:10.17487/RFC3549. {{cite journal}}Cite journal requires |journal= (help)
  10. ^ A. Farrel (Old Dog Consulting), J. Vasseur (Cisco Systems, Inc.), and J. Ash (AT&T) (August 2006). “A Path Computation Element (PCE)-Based Architecture”doi:10.17487/RFC4655. {{cite journal}}Cite journal requires |journal= (help)
  11. ^ Martìn Casado, Michael J. Freedman, Justin Pettit, Jianying Luo, and Nick McKeown (Stanford University) (August 2007). “Ethane: Taking Control of the Enterprise” (PDF).
  12. ^ N. McKeown, T. Anderson, H. Balakrishnan, G. Parulkar, L. Peterson, J. Rexford, S. Shenker, and J. Turner. (April 2008). “OpenFlow: Enabling Innovation in Campus Networks” (PDF).
  13. ^ N. Gude, T. Koponen, J. Pettit, B. Pfaff, M. Casado, N. McKeown, and S. Shenker. (July 2008). “NOX: Towards an Operating System for Networks” (PDF).
  14. ^ US application 2009044270, Shelly, Asaf & Feldman, Moshe, “Network element and an infrastructure for a network risk management system”, published 2009-02-12, abandoned 2011.
  15. ^ WO application 2009010982, Shelly, Asaf, “Software for a real-time infrastructure”, published 2009-01-22
  16. ^ WO application 2009004628, Shelly, Asaf, “Multi-core CPU”, published 2009-01-08
  17. ^ WO application 2009093237, Shelly, Asaf, “Network interactions management using interest frames and clearance rings”, published 2009-07-30
  18. ^ Farias, Fernando N. N.; Junior, Antônio de O.; da Costa, Leonardo B.; Pinheiro, Billy A.; Abelém, Antônio J. G. (2019-08-28). “vSDNEmul: A Software-Defined Network Emulator Based on Container Virtualization”. arXiv:1908.10980 [cs.NI].
  19. ^ Wang, S.; Chou, C.; Yang, C. (September 2013). “EstiNet openflow network simulator and emulator”. IEEE Communications Magazine51 (9): 110–117. doi:10.1109/MCOM.2013.6588659ISSN 1558-1896S2CID 14375937.
  20. ^ Oliveira, R. L. S. de; Schweitzer, C. M.; Shinoda, A. A.; Ligia Rodrigues Prete (June 2014). “Using Mininet for emulation and prototyping Software-Defined Networks”. 2014 IEEE Colombian Conference on Communications and Computing (COLCOM). pp. 1–6. doi:10.1109/ColComCon.2014.6860404ISBN 978-1-4799-4340-1S2CID 17915639.
  21. ^ “GENI. Campus OpenFlow topology”. 2011.
  22. ^ Kuang-Ching “KC” Wang (Oct 3, 2011). “Software Defined Networking and OpenFlow for Universities: Motivation, Strategy, and Uses” (PDF). Archived from the original (PDF) on 2018-01-03.
  23. ^ Sushant Jain, Alok Kumar, Subhasree Mandal, Joon Ong, Leon Poutievski, Arjun Singh, Subbaiah Venkata, Jim Wanderer, Junlan Zhou, Min Zhu, Jonathan Zolla, Urs Hölzle, Stephen Stuart and Amin Vahdat (Google) (August 12–16, 2013). “B4: Experience with a Globally-Deployed Software Defined WAN” (PDF). {{cite web}}|author= has generic name (help)
  24. ^ brent salisbury (May 14, 2013). “Inside Google’s Software-Defined Network”.
  25. ^ Arjun Singh, Joon Ong, Amit Agarwal, Glen Anderson, Ashby Armistead, Roy Bannon, Seb Boving, Gaurav Desai, Bob Felderman, Paulie Germano, Anand Kanagala, Jeff Provost, Jason Simmons, Eiichi Tanda, Jim Wanderer, Urs Hölzle, Stephen Stuart, Amin Vahdat (2015). “Jupiter Rising: A Decade of Clos Topologies and Centralized Control in Google’s Datacenter Network”.
  26. ^ “”MPLS-TP OpenFlow Protocol Extensions for SPTN” becomes a formal ONF standard by unanimous approval”. June 27, 2017.
  27. ^ Camille Campbell (February 6, 2014). “Avaya Debuts Networking Innovations at ‘Tech Field Day'”.
  28. ^ Elizabeth Miller Coyne (September 23, 2016). “Huawei Exec: SDN’s Become a ‘Completely Meaningless Term'”Light Reading.
  29. ^ “Software-Defined Networking (SDN) Definition”Opennetworking.org. Retrieved 26 October 2014.
  30. ^ Montazerolghaem, Ahmadreza; Yaghmaee, Mohammad Hossein; Leon-Garcia, Alberto (September 2020). “Green Cloud Multimedia Networking: NFV/SDN Based Energy-Efficient Resource Allocation”IEEE Transactions on Green Communications and Networking4 (3): 873–889. doi:10.1109/TGCN.2020.2982821ISSN 2473-2400S2CID 216188024.
  31. ^ “White Papers”Opennetworking.org. Retrieved 26 October 2014.
  32. ^ Montazerolghaem, Ahmadreza.; Yaghmaee, M. H.; Leon-Garcia, A. (2017). “OpenSIP: Toward Software-Defined SIP Networking”. IEEE Transactions on Network and Service ManagementPP (99): 184–199. arXiv:1709.01320Bibcode:2017arXiv170901320Mdoi:10.1109/tnsm.2017.2741258ISSN 1932-4537S2CID 3873601.
  33. ^ Vicentini, Cleverton; Santin, Altair; Viegas, Eduardo; Abreu, Vilmar (January 2019). “SDN-based and multitenant-aware resource provisioning mechanism for cloud-based big data streaming”. Journal of Network and Computer Applications126: 133–149. doi:10.1016/j.jnca.2018.11.005S2CID 57941895.
  34. ^ Assefa, Beakal Gizachew; Özkasap, Öznur (June 2020). “RESDN: A Novel Metric and Method for Energy Efficient Routing in Software Defined Networks”IEEE Transactions on Network and Service Management17 (2): 736–749. arXiv:1905.12219doi:10.1109/TNSM.2020.2973621S2CID 199442001.
  35. ^ Oliveira, Tadeu F.; Xavier-de-Souza, Samuel; Silveira, Luiz F. (May 2021). “Improving Energy Efficiency on SDN Control-Plane Using Multi-Core Controllers”Energies14 (11): 3161. doi:10.3390/en14113161.
  36. ^ “SDN Architecture Overview” (PDF)Opennetworking.org. Retrieved 22 November 2014.
  37. ^ Yeganeh, S.H.; Ganjali, Y. “Kandoo: A Framework for Efficient and Scalable Offloading of Control Applications”doi:10.1145/2342441.2342446S2CID 193153. {{cite journal}}Cite journal requires |journal= (help)
  38. ^ Ahmed, R.; Boutaba, R. (2014). “Design considerations for managing wide area software defined networks”. IEEE Communications Magazine52 (7): 116–123. doi:10.1109/MCOM.2014.6852092S2CID 7912785.
  39. ^ Koponen, T. (2010). “Onix: A Distributed Control Platform for Large scale Production Networks” (PDF)Proceedings USENIX, Ser. OSDI’10. Vancouver, Canada.
  40. ^ Tuncer, Daphne; Charalambides, Marinos; Clayman, Stuart; Pavlou, George (March 2015). “Adaptive Resource Management and Control in Software Defined Networks”IEEE Transactions on Network and Service Management12 (1): 18–33. doi:10.1109/TNSM.2015.2402752hdl:10044/1/63600S2CID 9215618.
  41. ^ Heller, B.; Sherwood, R.; McKeown, N. (2012). “The Controller Placement Problem”. Proceedings of the first workshop on Hot topics in software defined networks – HotSDN ’12. p. 7. doi:10.1145/2342441.2342444ISBN 9781450314770S2CID 1770114.
  42. ^ Hu, Yan-nan; Wang, Wen-Dong; Gong, Xiang-Yang; Que, Xi-Rong; Cheng, Shi-Duan (2012). “On the placement of controllers in software-defined networks”. The Journal of China Universities of Posts and Telecommunications19: 92–171. doi:10.1016/S1005-8885(11)60438-X.
  43. ^ Ros, Francisco Javier; Ruiz, Pedro Miguel (2014). “Five nines of southbound reliability in software-defined networks”. Proceedings of the third workshop on Hot topics in software defined networking. pp. 31–36. doi:10.1145/2620728.2620752ISBN 9781450329897S2CID 17088018.
  44. ^ Tuncer, Daphne; Charalambides, Marinos; Clayman, Stuart; Pavlou, George (2015). “On the Placement of Management and Control Functionality in Software Defined Networks”. 2015 11th International Conference on Network and Service Management (CNSM). pp. 360–365. doi:10.1109/CNSM.2015.7367383ISBN 978-3-9018-8277-7S2CID 6977724.
  45. ^ Wang, An; Guo, Yang; Hao, Fang; Lakshman, T.; Chen, Songqing (2 December 2014). “Scotch: Elastically Scaling up SDN Control-Plane using vSwitch based Overlay” (PDF)ACM CoNEXT.
  46. ^ Taylor, Curtis; MacFarland, Douglas; Smestad, Doran; Shue, Craig (10 April 2014). “Contextual, flow-based access control with scalable host-based SDN techniques”IEEE INFOCOM 2016 – the 35th Annual IEEE International Conference on Computer Communications. pp. 1–9. doi:10.1109/INFOCOM.2016.7524498ISBN 978-1-4673-9953-1S2CID 17491115.
  47. ^ Chuluundorj, Zorigtbaatar; Taylor, Curtis; Walls, Robert; Shue, Craig (6 December 2021). “Can the User Help? Leveraging User Actions for Network Profiling”2021 Eighth International Conference on Software Defined Systems (SDS). pp. 1–8. doi:10.1109/SDS54264.2021.9732164ISBN 978-1-6654-5820-7S2CID 244036711.
  48. ^ Lei, Yunsen; Lanson, Julian; Kaldawy, Remy; Estrada, Jeffrey; Shue, Craig (11 November 2020). “Can Host-Based SDNS Rival the Traffic Engineering Abilities of Switch-Based SDNS?”2020 11th International Conference on Network of the Future (NoF). pp. 91–99. doi:10.1109/NoF50125.2020.9249110ISBN 978-1-7281-8055-7S2CID 221505891.
  49. ^ “OpenFlow: Proactive vs Reactive”NetworkStatic.net. 2013-01-15. Retrieved 2014-07-01.
  50. ^ “Reactive, Proactive, Predictive: SDN Models | F5 DevCentral”Devcentral.f5.com. 2012-10-11. Retrieved 2016-06-30.
  51. ^ Pentikousis, Kostas; Wang, Yan; Hu, Weihua (2013). “Mobileflow: Toward software-defined mobile networks”. IEEE Communications Magazine51 (7): 44–53. doi:10.1109/MCOM.2013.6553677S2CID 10655582.
  52. ^ Liyanage, Madhusanka (2015). Software Defined Mobile Networks (SDMN): Beyond LTE Network Architecture. UK: John Wiley. pp. 1–438. ISBN 978-1-118-90028-4.
  53. ^ Costa-Requena, Jose; Liyanage, Madhusanka; Ylianttila, Mika; De Oca, Edgardo Montes; Santos, Jesus Llorente; Guasch, Vicent Ferrer; Ahokas, Kimmo; Premsankar, Gopika; Luukkainen, Sakari; Perez, Oscar Lopez; Itzazelaia, Mikel Uriarte; Ahmad, Ijaz (2015). “SDN and NFV Integration in Generalized Mobile Network Architecture”. 2015 European Conference on Networks and Communications (EuCNC). pp. 154–158. doi:10.1109/EuCNC.2015.7194059ISBN 978-1-4673-7359-3S2CID 2453962.
  54. ^ Liyanage, Madhusanka; Ylianttila, Mika; Gurtov, Andrei (2014). “Securing the Control Channel of Software-Defined Mobile Networks”. Proceeding of IEEE International Symposium on a World of Wireless, Mobile and Multimedia Networks 2014. pp. 1–6. doi:10.1109/WoWMoM.2014.6918981ISBN 978-1-4799-4786-7S2CID 1378181.
  55. ^ Haranas, Mark (8 October 2016). “16 Hot Networking Products Putting The Sizzle In SD-WAN”. CRN. Retrieved 1 November 2016.
  56. ^ “SD-WAN: What it is and why you’ll use it one day”Network World. 2016-02-10. Retrieved 2016-06-27.
  57. ^ Serries, William (12 September 2016). “SD-LAN et SD-WAN : Deux Approches Différentes pour le Software Defined Networking”. ZDNet. Retrieved 1 November 2016.
  58. ^ Kerravala, Zeus (13 September 2016). “Aerohive Introduces the Software-defined LAN”. Network World. Retrieved 1 November 2016.
  59. ^ Kreutz, Diego; Ramos, Fernando; Verissimo, Paulo (2013). “Towards secure and dependable software-defined networks”. Proceedings of the second ACM SIGCOMM workshop on Hot topics in software defined networking. pp. 50–60.
  60. ^ Scott-Hayward, Sandra; O’Callaghan, Gemma; Sezer, Sakir (2013). “SDN security: A survey”. Future Networks and Services (SDN4FNS), 2013 IEEE SDN for. pp. 1–7.
  61. ^ Benton, Kevin; Camp, L Jean; Small, Chris (2013). “Openflow vulnerability assessment”. Proceedings of the second ACM SIGCOMM workshop on Hot topics in software defined networking. pp. 151–152.
  62. ^ Abdou, AbdelRahman; van Oorschot, Paul; Wan, Tao (May 2018). “A Framework and Comparative Analysis of Control Plane Security of SDN and Conventional Networks”. IEEE Communications Surveys and Tutorials. to appear. arXiv:1703.06992Bibcode:2017arXiv170306992A.
  63. ^ Giotis, K; Argyropoulos, Christos; Androulidakis, Georgios; Kalogeras, Dimitrios; Maglaris, Vasilis (2014). “Combining OpenFlow and sFlow for an effective and scalable anomaly detection and mitigation mechanism on SDN environments”Computer Networks62: 122–136. doi:10.1016/j.bjp.2013.10.014.
  64. ^ Braga, Rodrigo; Mota, Edjard; Passito, Alexandre (2010). “Lightweight DDoS flooding attack detection using NOX/OpenFlow”. Local Computer Networks (LCN), 2010 IEEE 35th Conference on. pp. 408–415.
  65. ^ Feamster, Nick (2010). “Outsourcing home network security”. Proceedings of the 2010 ACM SIGCOMM workshop on Home networks. pp. 37–42.
  66. ^ Jin, Ruofan & Wang, Bing (2013). “Malware detection for mobile devices using software-defined networking”. Research and Educational Experiment Workshop (GREE), 2013 Second GENI. 81-88.
  67. ^ Jafarian, Jafar Haadi; Al-Shaer, Ehab; Duan, Qi (2012). “Openflow random host mutation: transparent moving target defense using software defined networking”. Proceedings of the first workshop on Hot topics in software defined networks. pp. 127–132.
  68. ^ Kampanakis, Panos; Perros, Harry; Beyene, Tsegereda. SDN-based solutions for Moving Target Defense network protection (PDF). Retrieved 16 February 2022.
  69. Jump up to:a b Sherwood, Rob; Gibb, Glen; Yap, Kok-Kiong; Appenzeller, Guido; Casado, Martin; McKeown, Nick; Parulkar, Guru (2009). “Flowvisor: A network virtualization layer”. OpenFlow Switch Consortium, Tech. Rep.
  70. ^ Al-Shaer, Ehab & Al-Haj, Saeed (2010). “FlowChecker: Configuration analysis and verification of federated OpenFlow infrastructures”. Proceedings of the 3rd ACM workshop on Assurable and usable security configuration. pp. 37–44.
  71. ^ Canini, Marco; Venzano, Daniele; Peresini, Peter; Kostic, Dejan; Rexford, Jennifer; et al. (2012). A NICE Way to Test OpenFlow Applications. NSDI. pp. 127–140.
  72. ^ Bernardo and Chua (2015). Introduction and Analysis of SDN and NFV Security Architecture (SA-SECA). 29th IEEE AINA 2015. pp. 796–801.
  73. ^ B. Pfaf; et al. (February 28, 2011). “OpenFlow Switch Specification” (PDF). Retrieved July 8, 2017.
  74. ^ T. Zhu; et al. (October 18, 2016). “MCTCP: Congestion-aware and robust multicast TCP in Software-Defined networks”. 2016 IEEE/ACM 24th International Symposium on Quality of Service (IWQoS). IEEE. pp. 1–10. doi:10.1109/IWQoS.2016.7590433ISBN 978-1-5090-2634-0S2CID 28159768.
  75. ^ M. Noormohammadpour; et al. (July 10, 2017). “DCCast: Efficient Point to Multipoint Transfers Across Datacenters”. USENIX. Retrieved July 3, 2017.
  76. ^ M. Noormohammadpour; et al. (2018). QuickCast: Fast and Efficient Inter-Datacenter Transfers using Forwarding Tree CohortsarXiv:1801.00837Bibcode:2018arXiv180100837Ndoi:10.31219/osf.io/uzr24. Retrieved January 23, 2018.
  77. Jump up to:a b William, Stalling (2016). “Foundations of Modern Networking: SDN, NFV, QoE, IoT, and Cloud”. Pearson Education.
  78. ^ Rowayda, A. Sadek (May 2018). “An Agile Internet of Things (IoT) based Software Defined Network (SDN) Architecture”. Egyptian Computer Science Journal42 (2): 13–29.
  79. ^ “Platform to Multivendor Virtual and Physical Infrastructure”.
  80. ^ Graham, Finnie (December 2012). “The Role Of DPI In An SDN World”. White Paper.
  81. ^ Series, Y. (May 2015). “Global Information Infrastructure, Internet Protocol Aspects And Next Generation Networks”. ITU-T Y.2770 Series, Supplement on DPI Use Cases and Application Scenarios.
  82. ^ Canovas, Alejandro (2020). “A robust multimedia traffic SDN-Based management system using patterns and models of QoE estimation with BRNN”Journal of Network and Computer Applications150: 102498. doi:10.1016/j.jnca.2019.102498hdl:10251/163292S2CID 210925444.
  83. ^ Rego, Albert (2019). “Adapting reinforcement learning for multimedia transmission on SDN”Transactions on Emerging Telecommunications Technologies30 (9). doi:10.1002/ett.3643hdl:10251/186852S2CID 182028234.
  1.  Gillis, Alexander (2021). “What is internet of things (IoT)?”IOT Agenda. Retrieved 17 August 2021.
  2. ^ Brown, Eric (20 September 2016). “21 Open Source Projects for IoT”Linux.com. Retrieved 23 October 2016.
  3. ^ “Internet of Things Global Standards Initiative”ITU. Retrieved 26 June 2015.
  4. ^ Hendricks, Drew (10 August 2015). “The Trouble with the Internet of Things”London Datastore. Greater London Authority. Retrieved 10 August 2015.
  5. ^ Shafiq, Muhammad; Gu, Zhaoquan; Cheikhrouhou, Omar; Alhakami, Wajdi; Hamam, Habib (3 August 2022). “The Rise of “Internet of Things”: Review and Open Research Issues Related to Detection and Prevention of IoT-Based Security Attacks”Wireless Communications and Mobile Computing2022: e8669348. doi:10.1155/2022/8669348ISSN 1530-8669.
  6. ^ Beal, Vangie (2 March 2022) [1996-09-01]. “What is a Network?”WebopediaArchived from the original on 22 November 2022. Retrieved 22 November 2022.
  7. ^ Dey, Nilanjan; Hassanien, Aboul Ella; Bhatt, Chintan; Ashour, Amira; Satapathy, Suresh Chandra, eds. (2018). Internet of things and big data analytics toward next-generation intelligence. Cham, Switzerland: Springer. p. 440. ISBN 978-3-319-60435-0OCLC 1001327784.
  8. ^ “Forecast: The Internet of Things, Worldwide, 2013”Gartner. 18 November 2013. Retrieved 3 March 2022.
  9. ^ Hu, J.; Niu, H.; Carrasco, J.; Lennox, B.; Arvin, F., “Fault-tolerant cooperative navigation of networked UAV swarms for forest fire monitoring” Aerospace Science and Technology, 2022. doi:10.1016/j.ast.2022.107494.
  10. ^ Hu, J.; Lennox, B.; Arvin, F., “Robust formation control for networked robotic systems using Negative Imaginary dynamics” Automatica, 2022. doi:10.1016/j.automatica.2022.110235.
  11. ^ Laplante, Phillip A.; Kassab, Mohamad; Laplante, Nancy L.; Voas, Jeffrey M. (2018). “Building Caring Healthcare Systems in the Internet of Things”IEEE Systems Journal12 (3): 3030–3037. Bibcode:2018ISysJ..12.3030Ldoi:10.1109/JSYST.2017.2662602ISSN 1932-8184PMC 6506834PMID 31080541.
  12. ^ “The New York City Internet of Things Strategy”www1.nyc.gov. Retrieved 6 September 2021.
  13. ^ Mulder, T.; Tudorica, M. (2 September 2019). “Privacy policies, cross-border health data and the GDPR”Information & Communications Technology Law28 (3): 261–274. doi:10.1080/13600834.2019.1644068ISSN 1360-0834.
  14. Jump up to:a b Pony vending in use
  15. Jump up to:a b c d Earnest, Les (13 December 2009). “SAIL Sagas”Stanford University. Archived from the original on 9 July 2020. Retrieved 15 September 2024.
  16. ^ “TAKE ME, I’M YOURS: The autobiography of SAIL”Stanford InfoLabStanford. Archived from the original on 8 February 2007. Retrieved 15 September 2024.
  17. ^ Earnest, Les“SAIL Away”WebStanford. Archived from the original on 27 December 2020. Retrieved 15 September 2024Originally published in The Analytical Engine, May 1995, under the silly title “HELLO, SAILOR!” chosen by the editor. (The Analytical Engine: Newsletter of the Computer History Association of California)
  18. ^ “CMU SCS Coke Machine Home Page”www.cs.cmu.edu. Retrieved 15 September 2024.
  19. ^ “history_long.txt”~coke. cs.cmu.edu. Retrieved 15 September 2024.
  20. ^ “history_short.txt”~coke. cs.cmu.edu. Retrieved 15 September 2024.
  21. ^ “coke.history.txt”~coke. cs.cmu.edu. Retrieved 15 September 2024.
  22. ^ “The ‘Only’ Coke Machine on the Internet”cs.cmu.eduCarnegie Mellon University. Retrieved 10 November 2014.
  23. ^ “Internet of Things Done Wrong Stifles Innovation”InformationWeek. 7 July 2014. Retrieved 10 November 2014.
  24. ^ Mattern, Friedemann; Floerkemeier, Christian (2010). “From the Internet of Computer to the Internet of Things” (PDF)Informatik-Spektrum33 (2): 107–121. Bibcode:2009InfSp..32..496Hdoi:10.1007/s00287-010-0417-7hdl:20.500.11850/159645S2CID 29563772. Retrieved 3 February 2014.
  25. ^ Weiser, Mark (1991). “The Computer for the 21st Century” (PDF)Scientific American265 (3): 94–104. Bibcode:1991SciAm.265c..94Wdoi:10.1038/scientificamerican0991-94. Archived from the original (PDF) on 11 March 2015. Retrieved 5 November 2014.
  26. ^ Raji, R.S. (1994). “Smart networks for control”. IEEE Spectrum31 (6): 49–55. doi:10.1109/6.284793S2CID 42364553.
  27. ^ Pontin, Jason (29 September 2005). “ETC: Bill Joy’s Six Webs”MIT Technology Review. Retrieved 17 November 2013.
  28. ^ Lakhwani, Kamlesh (2020). Internet of Things (IoT) : Principles, Paradigms and Applications of IoT. Hemant Kumar Gianey, Joseph Kofi Wireko, Kamal Kant Hiran. [Place of publication not identified]. ISBN 9789389423365OCLC 1188989203.
  29. ^ Ashton, K. (22 June 2009). “That ‘Internet of Things’ Thing”rfidjournal.com. Archived from the original on 15 April 2013. Retrieved 9 May 2017.
  30. ^ “Peter Day’s World of Business”BBC.co.uk. BBC World Service. Retrieved 4 October 2016.
  31. ^ Magrassi, P. (2 May 2002). “Why a Universal RFID Infrastructure Would Be a Good Thing”Gartner research report G00106518.
  32. ^ Magrassi, P.; Berg, T (12 August 2002). “A World of Smart Objects”Gartner research report R-17-2243. Archived from the original on 3 October 2003.
  33. ^ “Internet of Things – An action plan for Europe” (PDF)ec.europa.eu. Commission of the European Communities. 18 June 2009. COM(2009) 278 final.
  34. ^ Wood, Alex (31 March 2015). “The internet of things is revolutionizing our lives, but standards are a must”The Guardian.
  35. ^ Stallings, William (2016). Foundations of modern networking : SDN, NFV, QoE, IoT, and Cloud. Florence Agboma, Sofiene Jelassi. Indianapolis. ISBN 978-0-13-417547-8OCLC 927715441.
  36. ^ “StackPath”Industryweek.com. 21 December 2004. Retrieved 20 May 2022.
  37. ^ Dave Evans (April 2011). “The Internet of Things: How the Next Evolution of the Internet Is Changing Everything” (PDF)CISCO White Paper.
  38. ^ Vongsingthong, S.; Smanchat, S. (2014). “Internet of Things: A review of applications & technologies” (PDF)Suranaree Journal of Science and Technology.
  39. ^ “The Enterprise Internet of Things Market”Business Insider. 25 February 2015. Retrieved 26 June 2015.
  40. ^ Perera, C.; Liu, C. H.; Jayawardena, S. (December 2015). “The Emerging Internet of Things Marketplace From an Industrial Perspective: A Survey”. IEEE Transactions on Emerging Topics in Computing3 (4): 585–598. arXiv:1502.00134Bibcode:2015arXiv150200134Pdoi:10.1109/TETC.2015.2390034ISSN 2168-6750S2CID 7329149.
  41. ^ “How IoT’s are Changing the Fundamentals of “Retailing””Trak.in – Indian Business of Tech, Mobile & Startups. 30 August 2016. Retrieved 2 June 2017.
  42. ^ Kang, Won Min; Moon, Seo Yeon; Park, Jong Hyuk (5 March 2017). “An enhanced security framework for home appliances in smart home”Human-centric Computing and Information Sciences7 (6). doi:10.1186/s13673-017-0087-4.
  43. Jump up to:a b “How IoT & smart home automation will change the way we live”Business Insider. Retrieved 10 November 2017.
  44. Jump up to:a b Jussi Karlgren; Lennart Fahlén; Anders Wallberg; Pär Hansson; Olov Ståhl; Jonas Söderberg; Karl-Petter Åkesson (2008). “Socially Intelligent Interfaces for Increased Energy Awareness in the Home”. The Internet of Things. Lecture Notes in Computer Science. Vol. 4952. Springer. pp. 263–275. arXiv:2106.15297doi:10.1007/978-3-540-78731-0_17ISBN 978-3-540-78730-3S2CID 30983428.
  45. ^ Greengard, Samuel (2015). The Internet of Things. Cambridge, MA: MIT Press. p. 90. ISBN 9780262527736.
  46. ^ “HomeKit – Apple Developer”developer.apple.com. Retrieved 19 September 2018.
  47. ^ Wollerton, Megan (3 June 2018). “Here’s everything you need to know about Apple HomeKit”CNET. Retrieved 19 September 2018.
  48. Jump up to:a b Lovejoy, Ben (31 August 2018). “HomeKit devices getting more affordable as Lenovo announces Smart Home Essentials line”9to5Mac. Retrieved 19 September 2018.
  49. ^ Prospero, Mike (12 September 2018). “Best Smart Home Hubs of 2018”Tom’s Guide. Retrieved 19 September 2018.
  50. ^ Baker, Jason (14 December 2017). “6 open source home automation tools”opensource.com. Retrieved 13 May 2019.
  51. Jump up to:a b Demiris, G; Hensel, K (2008). “Technologies for an Aging Society: A Systematic Review of ‘Smart Home’ Applications”IMIA Yearbook of Medical Informatics 200817: 33–40. doi:10.1055/s-0038-1638580PMID 18660873S2CID 7244183.
  52. ^ Aburukba, Raafat; Al-Ali, A. R.; Kandil, Nourhan; AbuDamis, Diala (10 May 2016). “Configurable ZigBee-based control system for people with multiple disabilities in smart homes”. 2016 International Conference on Industrial Informatics and Computer Systems (CIICS). pp. 1–5. doi:10.1109/ICCSII.2016.7462435ISBN 978-1-4673-8743-9S2CID 16754386.
  53. ^ Mulvenna, Maurice; Hutton, Anton; Martin, Suzanne; Todd, Stephen; Bond, Raymond; Moorhead, Anne (14 December 2017). “Views of Caregivers on the Ethics of Assistive Technology Used for Home Surveillance of People Living with Dementia”Neuroethics10 (2): 255–266. doi:10.1007/s12152-017-9305-zPMC 5486509PMID 28725288.
  54. Jump up to:a b da Costa, CA; Pasluosta, CF; Eskofier, B; da Silva, DB; da Rosa Righi, R (July 2018). “Internet of Health Things: Toward intelligent vital signs monitoring in hospital wards”. Artificial Intelligence in Medicine89: 61–69. doi:10.1016/j.artmed.2018.05.005PMID 29871778S2CID 46941758.
  55. ^ Engineer, A; Sternberg, EM; Najafi, B (21 August 2018). “Designing Interiors to Mitigate Physical and Cognitive Deficits Related to Aging and to Promote Longevity in Older Adults: A Review”Gerontology64 (6): 612–622. doi:10.1159/000491488PMID 30130764S2CID 52056959. Open access icon
  56. Jump up to:a b Kricka, LJ (2019). “History of disruptions in laboratory medicine: what have we learned from predictions?”Clinical Chemistry and Laboratory Medicine57 (3): 308–311. doi:10.1515/cclm-2018-0518PMID 29927745S2CID 49354315.
  57. ^ Gatouillat, Arthur; Badr, Youakim; Massot, Bertrand; Sejdic, Ervin (2018). “Internet of Medical Things: A Review of Recent Contributions Dealing with Cyber-Physical Systems in Medicine” (PDF)IEEE Internet of Things Journal5 (5): 3810–3822. doi:10.1109/jiot.2018.2849014ISSN 2327-4662S2CID 53440449.
  58. ^ Topol, Eric (2016). The Patient Will See You Now: The Future of Medicine Is in Your Hands. Basic Books. ISBN 978-0465040025.
  59. Jump up to:a b Dey, Nilanjan; Hassanien, Aboul Ella; Bhatt, Chintan; Ashour, Amira S.; Satapathy, Suresh Chandra (2018). Internet of things and big data analytics toward next-generation intelligence (PDF). Springer International Publishing. ISBN 978-3-319-60434-3. Archived from the original (PDF) on 14 October 2018. Retrieved 14 October 2018.
  60. ^ Pratap Singh, R.; Javaid, M.; Haleem, A.; Vaishya, R.; Ali, S. (2020). “Internet of Medical Things (IoMT) for orthopaedic in COVID-19 pandemic: Roles, challenges, and applications”Journal of Clinical Orthopaedics and Trauma11 (4): 713–717. doi:10.1016/j.jcot.2020.05.011PMC 7227564PMID 32425428.
  61. ^ “Deloitte Centre for Health Solutions” (PDF)Deloitte.
  62. Jump up to:a b c d e f g h i j Ersue, M.; Romascanu, D.; Schoenwaelder, J.; Sehgal, A. (May 2015). “Management of Networks with Constrained Devices: Use Cases”IETF Internet Draft.
  63. ^ “Goldman Sachs Report: How the Internet of Things Can Save the American Healthcare System $305 Billion Annually”Engage Mobile Blog. Engage Mobile Solutions, LLC. 23 June 2016. Archived from the original on 26 July 2018. Retrieved 26 July 2018.
  64. ^ World Health Organization. “mHealth. New horizons for health through mobile technologies” (PDF)World Health Organization. Retrieved 3 January 2020.
  65. ^ Istepanian, R.; Hu, S.; Philip, N.; Sungoor, A. (2011). “The potential of Internet of m-health Things “m-IoT” for non-invasive glucose level sensing”2011 Annual International Conference of the IEEE Engineering in Medicine and Biology Society. Vol. 2011. pp. 5264–6. doi:10.1109/IEMBS.2011.6091302ISBN 978-1-4577-1589-1PMID 22255525S2CID 995488.
  66. ^ Swan, Melanie (8 November 2012). “Sensor Mania! The Internet of Things, Wearable Computing, Objective Metrics, and the Quantified Self 2.0”Journal of Sensor and Actuator Networks1 (3): 217–253. doi:10.3390/jsan1030217.
  67. ^ Taiwan Information Strategy, Internet and E-commerce Development Handbook – Strategic Information, Regulations, Contacts. IBP, Inc. USA. 2016. p. 79. ISBN 978-1514521021.
  68. ^ Grell, Max; Dincer, Can; Le, Thao; Lauri, Alberto; Nunez Bajo, Estefania; Kasimatis, Michael; Barandun, Giandrin; Maier, Stefan A.; Cass, Anthony E. G. (2019). “Autocatalytic Metallization of Fabrics Using Si Ink, for Biosensors, Batteries and Energy Harvesting”Advanced Functional Materials29 (1): 1804798. doi:10.1002/adfm.201804798ISSN 1616-301XPMC 7384005PMID 32733177.
  69. ^ Dincer, Can; Bruch, Richard; Kling, André; Dittrich, Petra S.; Urban, Gerald A. (1 August 2017). “Multiplexed Point-of-Care Testing – xPOCT”Trends in Biotechnology35 (8): 728–742. doi:10.1016/j.tibtech.2017.03.013ISSN 0167-7799PMC 5538621PMID 28456344.
  70. ^ “What is HIE? | HealthIT.gov”www.healthit.gov. Retrieved 21 January 2020.
  71. ^ Amiot, Emmanuel. “The Internet of Things. Disrupting Traditional Business Models” (PDF)Oliver Wyman. Retrieved 14 October 2018.
  72. ^ Vermesan, Ovidiu, and Peter Friess, eds. Internet of things: converging technologies for smart environments and integrated ecosystems. River Publisher, 2013. https://www.researchgate.net/publication/272943881
  73. ^ Mahmud, Khizir; Town, Graham E.; Morsalin, Sayidul; Hossain, M.J. (February 2018). “Integration of electric vehicles and management in the internet of energy”. Renewable and Sustainable Energy Reviews82: 4179–4203. Bibcode:2018RSERv..82.4179Mdoi:10.1016/j.rser.2017.11.004.
  74. ^ Xie, Xiao-Feng; Wang, Zun-Jing (2017). “Integrated in-vehicle decision support system for driving at signalized intersections: A prototype of smart IoT in transportation”Transportation Research Board (TRB) Annual Meeting, Washington, DC, USA.
  75. ^ “Key Applications of the Smart IoT to Transform Transportation”. 20 September 2016.
  76. ^ “V2V and V2X Technology Paves the Way for Autonomous Driving | ASSEMBLY”www.assemblymag.com. Retrieved 20 February 2024.
  77. Jump up to:a b c d Haase, Jan; Alahmad, Mahmoud; Nishi, Hiroaki; Ploennigs, Joern; Tsang, Kim Fung (2016). “The IOT mediated built environment: A brief survey”. 2016 IEEE 14th International Conference on Industrial Informatics (INDIN). pp. 1065–1068. doi:10.1109/INDIN.2016.7819322ISBN 978-1-5090-2870-2S2CID 5554635.
  78. ^ “Everything You Need to Know About IoT & Industrial Internet of Things”. Archived from the original on 24 January 2022. Retrieved 5 July 2022.
  79. ^ Yang, Chen; Shen, Weiming; Wang, Xianbin (January 2018). “The Internet of Things in Manufacturing: Key Issues and Potential Applications”. IEEE Systems, Man, and Cybernetics Magazine4 (1): 6–15. doi:10.1109/MSMC.2017.2702391S2CID 42651835.
  80. ^ Severi, S.; Abreu, G.; Sottile, F.; Pastrone, C.; Spirito, M.; Berens, F. (23–26 June 2014). “M2M Technologies: Enablers for a Pervasive Internet of Things”The European Conference on Networks and Communications (EUCNC2014).
  81. Jump up to:a b Gubbi, Jayavardhana; Buyya, Rajkumar; Marusic, Slaven; Palaniswami, Marimuthu (24 February 2013). “Internet of Things (IoT): A vision, architectural elements, and future directions”. Future Generation Computer Systems29 (7): 1645–1660. arXiv:1207.0203doi:10.1016/j.future.2013.01.010S2CID 204982032.
  82. ^ Tan, Lu; Wang, Neng (20–22 August 2010). “Future internet: The Internet of Things”. 2010 3rd International Conference on Advanced Computer Theory and Engineering(ICACTE). Vol. 5. pp. 376–380. doi:10.1109/ICACTE.2010.5579543ISBN 978-1-4244-6539-2S2CID 40587.
  83. ^ “Industrialized Construction in Academia” (PDF)Autodesk.
  84. ^ Meola, A. (20 December 2016). “Why IoT, big data & smart farming are the future of agriculture”Business Insider. Insider, Inc. Retrieved 26 July 2018.
  85. ^ Zhang, Q. (2015). Precision Agriculture Technology for Crop Farming. CRC Press. pp. 249–58. ISBN 9781482251081.
  86. ^ “Google goes bilingual, Facebook fleshes out translation and TensorFlow is dope ~ And, Microsoft is assisting fish farmers in Japan”The Register.
  87. ^ Vasisht, Deepak; Kapetanovic, Zerina; Won, Jongho; Jin, Xinxin; Chandra, Ranveer; Sinha, Sudipta; Kapoor, Ashish; Sudarshan, Madhusudhan; Stratman, Sean (2017). FarmBeats: An IoT Platform for Data-Driven Agriculture. pp. 515–529. ISBN 978-1-931971-37-9.
  88. ^ “FarmBeats: AI, Edge & IoT for Agriculture”Microsoft Research. Retrieved 28 June 2021.
  89. ^ “Monitoring apps: How the Internet of Things can turn your boat into a smart boat”Yachting World. 9 March 2020.
  90. ^ Chui, Michael; Löffler, Markus; Roberts, Roger. “The Internet of Things”McKinsey Quarterly. McKinsey & Company. Archived from the original on 14 March 2015. Retrieved 10 July 2014.
  91. ^ “Smart Trash”Postscapes. Retrieved 10 July 2014.
  92. ^ Poon, L. (22 June 2018). “Sleepy in Songdo, Korea’s Smartest City”CityLab. Atlantic Monthly Group. Retrieved 26 July 2018.
  93. ^ Rico, Juan (22–24 April 2014). “Going beyond monitoring and actuating in large scale smart cities”. NFC & Proximity Solutions – WIMA Monaco.
  94. ^ “A vision for a city today, a city of vision tomorrow”Sino-Singapore Guangzhou Knowledge City. Retrieved 11 July 2014.
  95. ^ “San Jose Implements Intel Technology for a Smarter City”Intel Newsroom. Retrieved 11 July 2014.
  96. ^ “Western Singapore becomes test-bed for smart city solutions”Coconuts Singapore. 19 June 2014. Retrieved 11 July 2014.
  97. ^ Higginbotham, Stacey. “A group of wireless execs aim to build a nationwide network for the Internet of things”Fortune.com. Retrieved 8 June 2019.
  98. ^ Freeman, Mike (9 September 2015). “On-Ramp Wireless becomes Ingenu, launches nationwide IoT network”SanDiegoUnionTribune.com. Retrieved 8 June 2019.
  99. ^ Lipsky, Jessica. “IoT Clash Over 900 MHz Options”EETimes. Retrieved 15 May 2015.
  100. ^ Alleven, Monica. “Sigfox launches IoT network in 10 UK cities”Fierce Wireless Tech. Retrieved 13 May 2015.
  101. ^ Merritt, Rick. “13 Views of IoT World”EETimes. Retrieved 15 May 2015.
  102. ^ Fitchard, Kevin (20 May 2014). “Sigfox brings its internet of things network to San Francisco”Gigaom. Archived from the original on 25 May 2015. Retrieved 15 May 2015.
  103. ^ Ujaley, Mohd (25 July 2018). “Cisco To Invest in Fiber Grid, IoT, Smart Cities in Andhra Pradesh”ProQuest 1774166769.
  104. ^ “Cisco helps Vijayawada create India’s longest smart street”. News Desk Geospatial World. 27 October 2017. Retrieved 21 February 2024.
  105. ^ “STE Security Innovation Awards Honorable Mention: The End of the Disconnect”securityinfowatch.com. 10 December 2012. Retrieved 12 August 2015.
  106. ^ Parello, J.; Claise, B.; Schoening, B.; Quittek, J. (28 April 2014). “Energy Management Framework”IETF.
  107. ^ Davies, Nicola. “How the Internet of Things will enable ‘smart buildings'”Extreme Tech.
  108. ^ “Molluscan eye”. Archived from the original on 12 November 2016. Retrieved 26 June 2015.
  109. ^ Li, Shixing; Wang, Hong; Xu, Tao; Zhou, Guiping (2011). “Application Study on Internet of Things in Environment Protection Field”. Informatics in Control, Automation and Robotics (Submitted manuscript). Lecture Notes in Electrical Engineering. Vol. 133. pp. 99–106. doi:10.1007/978-3-642-25992-0_13ISBN 978-3-642-25991-3. Archived from the original on 26 December 2019. Retrieved 7 November 2018.
  110. ^ “Use case: Sensitive wildlife monitoring”FIT French Project. Archived from the original on 14 July 2014. Retrieved 10 July 2014.
  111. ^ Hart, Jane K.; Martinez, Kirk (1 May 2015). “Toward an environmental Internet of Things”Earth and Space Science2 (5): 194–200. Bibcode:2015E&SS….2..194Hdoi:10.1002/2014EA000044.
  112. Jump up to:a b Scuotto, Veronica; Ferraris, Alberto; Bresciani, Stefano (4 April 2016). “Internet of Things”. Business Process Management Journal22 (2): 357–367. doi:10.1108/bpmj-05-2015-0074ISSN 1463-7154.
  113. ^ “Living Labs – European Network of Living Labs”. enoll.org. 31 August 2017. Retrieved 13 January 2024.
  114. ^ IoT services
  115. ^ Cameron, Lori (March 2018). “Internet of Things Meets the Military and Battlefield: Connecting Gear and Biometric Wearables for an IoMT and IoBT”IEEE Computer Society. Retrieved 31 October 2019.
  116. ^ Mizokami, Kyle (7 July 2022). “This AI-Enabled Tech Allows Troops to See Through Walls”Popular Mechanics. Retrieved 18 April 2023.
  117. ^ “Army Takes on Wicked Problems With the Internet of Battlefield Things”MeriTalk. 30 January 2018. Retrieved 31 October 2019.
  118. ^ Gudeman, Kim (6 October 2017). “Next-Generation Internet of Battle things (IoBT) Aims to Help Keep Troops and Civilians Safe”ECE Illinois. Retrieved 31 October 2019.
  119. ^ “Internet of Battlefield Things (IOBT)”CCDC Army Research Laboratory. Retrieved 31 October 2019.
  120. ^ “DARPA Floats a Proposal for the Ocean of Things”MeriTalk. 3 January 2018. Retrieved 31 October 2019.
  121. ^ “How to make smart packaging even smarter”Packaging Digest. 4 June 2018. Retrieved 28 April 2020.
  122. ^ “Connecting with consumers: The benefits – and dangers – of smart packaging for the F&B industry”foodnavigator-asia.com. 18 June 2019. Retrieved 28 April 2020.
  123. ^ “Which smart packaging technologies are readily available in 2018”confectionerynews.com. 18 July 2018. Retrieved 28 April 2020.
  124. ^ Chen, Changsheng; Li, Mulin; Ferreira, Anselmo; Huang, Jiwu; Cai, Rizhao (2020). “A Copy-Proof Scheme Based on the Spectral and Spatial Barcoding Channel Models”. IEEE Transactions on Information Forensics and Security15: 1056–1071. doi:10.1109/tifs.2019.2934861ISSN 1556-6013S2CID 201903693.
  125. ^ “MIT unveils battery-free crypto tag for anti-counterfeit”www.securingindustry.com. 26 February 2020. Retrieved 28 April 2020.
  126. ^ Nordrum, Amy (18 August 2016). “Popular Internet of Things Forecast of 50 Billion Devices by 2020 Is Outdated”IEEE Spectrum.
  127. ^ Vermesan, Ovidiu; Friess, Peter (2013). Internet of Things: Converging Technologies for Smart Environments and Integrated Ecosystems (PDF). Aalborg, Denmark: River Publishers. ISBN 978-87-92982-96-4.
  128. ^ Santucci, Gérald. “The Internet of Things: Between the Revolution of the Internet and the Metamorphosis of Objects” (PDF)European Commission Community Research and Development Information Service. Retrieved 23 October 2016.
  129. ^ Mattern, Friedemann; Floerkemeier, Christian. “From the Internet of Computers to the Internet of Things” (PDF)ETH Zurich. Retrieved 23 October 2016.
  130. ^ Lindner, Tim (13 July 2015). “The Supply Chain: Changing at the Speed of Technology”Connected World. Archived from the original on 22 August 2015. Retrieved 18 September 2015.
  131. ^ “Connected IoT device market update—Summer 2024”IoT Analytics. Retrieved 8 October 2024.
  132. ^ “State of the IoT 2020: 12 billion IoT connections, surpassing non-IoT for the first time”IoT Analytics. Retrieved 8 October 2024.
  133. ^ Duarte, Fabio (22 February 2023). “Number of IoT Devices (2024)”Exploding Topics. Retrieved 8 October 2024.
  134. ^ “Smarter Things: The Autonomous IoT”GDR Blog. GDR Creative Intelligence. 5 January 2018. Retrieved 26 July 2018.
  135. ^ Levine, Sergey; Finn, Chelsea; Darrell, Trevor; Abbeel, Pieter (2016). “End-to-End Training of Deep Visuomotor Policies” (PDF)The Journal of Machine Learning Research17 (1): 1334–1373. arXiv:1504.00702Bibcode:2015arXiv150400702L.
  136. Jump up to:a b Mohammadi, Mehdi; Al-Fuqaha, Ala; Sorour, Sameh; Guizani, Mohsen (2018). “Deep Learning for IoT Big Data and Streaming Analytics: A Survey”. IEEE Communications Surveys & Tutorials20 (4): 2923–2960. arXiv:1712.04301doi:10.1109/COMST.2018.2844341S2CID 9461213.
  137. ^ Mahdavinejad, Mohammad Saeid; Rezvan, Mohammadreza; Barekatain, Mohammadamin; Adibi, Peyman; Barnaghi, Payam; Sheth, Amit P. (2018). “Machine learning for internet of things data analysis: A survey”. Digital Communications and Networks4 (3): 161–175. arXiv:1802.06305Bibcode:2018arXiv180206305Sdoi:10.1016/j.dcan.2017.10.002S2CID 2666574.
  138. ^ Alippi, C. (2014). Intelligence for Embedded Systems. Springer Verlag. ISBN 978-3-319-05278-6.
  139. ^ Delicato, F.C.; Al-Anbuky, A.; Wang, K., eds. (2018). Smart Cyber-Physical Systems: towards Pervasive Intelligence systems. Elsevier. Retrieved 26 July 2018. {{cite book}}|work= ignored (help)
  140. Jump up to:a b c d Traukina, Alena; Thomas, Jayant; Tyagi, Prashant; Reddipalli, Kishore (29 September 2018). Industrial Internet Application Development: Simplify IIoT development using the elasticity of Public Cloud and Native Cloud Services (1st ed.). Packt Publishing. p. 18.
  141. ^ Hassan, Qusay; Khan, Atta; Madani, Sajjad (2018). Internet of Things: Challenges, Advances, and Applications. Boca Raton, Florida: CRC Press. p. 198. ISBN 9781498778510.
  142. ^ Chauhuri, Abhik (2018). Internet of Things, for Things, and by Things. Boca Raton, Florida: CRC Press. ISBN 9781138710443.
  143. ^ Pal, Arpan (May–June 2015). “Internet of Things: Making the Hype a Reality” (PDF)IT Pro17 (3): 2–4. doi:10.1109/MITP.2015.36. Archived from the original (PDF) on 4 July 2015. Retrieved 10 April 2016.
  144. ^ “Gartner Says 6.4 Billion Connected “Things” Will Be in Use in 2016, Up 30 Percent From 2015″Gartner. 10 November 2015. Archived from the original on 12 November 2015. Retrieved 21 April 2016.
  145. ^ Reza Arkian, Hamid (2017). “MIST: Fog-based Data Analytics Scheme with Cost-Efficient Resource Provisioning for IoT Crowdsensing Applications”. Journal of Network and Computer Applications82: 152–165. doi:10.1016/j.jnca.2017.01.012.
  146. ^ “IoT The outer Edge Computing”. June 2019. Archived from the original on 26 November 2020. Retrieved 3 June 2019. {{cite journal}}Cite journal requires |journal= (help)
  147. ^ Cui, Laizhong; Yang, Shu; Chen, Ziteng; Pan, Yi; Ming, Zhong; Xu, Mingwei (May 2020). “A Decentralized and Trusted Edge Computing Platform for Internet of Things”. IEEE Internet of Things Journal7 (5): 3910–3922. doi:10.1109/JIOT.2019.2951619ISSN 2327-4662S2CID 209097962.
  148. ^ Messaoud, Seifeddine; Bradai, Abbas; Bukhari, Syed Hashim Raza; Quang, Pham Tran Anh; Ahmed, Olfa Ben; Atri, Mohamed (1 December 2020). “A survey on machine learning in Internet of Things: Algorithms, strategies, and applications”. Internet of Things12: 100314. doi:10.1016/j.iot.2020.100314ISSN 2542-6605S2CID 228876304.
  149. ^ Nguyen, Tien-Dung; Huh, Eui-Nam; Jo, Minho (June 2019). “Decentralized and Revised Content-Centric Networking-Based Service Deployment and Discovery Platform in Mobile Edge Computing for IoT Devices”. IEEE Internet of Things Journal6 (3): 4162–4175. doi:10.1109/JIOT.2018.2875489ISSN 2327-4662S2CID 69250756.
  150. ^ Xiong, Zehui; Zhang, Yang; Luong, Nguyen Cong; Niyato, Dusit; Wang, Ping; Guizani, Nadra (January 2020). “The Best of Both Worlds: A General Architecture for Data Management in Blockchain-enabled Internet-of-Things”. IEEE Network34 (1): 166–173. doi:10.1109/MNET.001.1900095ISSN 1558-156XS2CID 211050783.
  151. ^ Alhaizaey, Yousef; Singer, Jeremy; Michala, Anna Lito (June 2021). “Optimizing Task Allocation for Edge Micro-Clusters in Smart Cities” (PDF)2021 IEEE 22nd International Symposium on a World of Wireless, Mobile and Multimedia Networks (WoWMoM). pp. 341–347. doi:10.1109/WoWMoM51794.2021.00062ISBN 978-1-6654-2263-5S2CID 235780952.
  152. ^ Guo, Hongzhi; Liu, Jiajia; Qin, Huiling (January 2018). “Collaborative Mobile Edge Computation Offloading for IoT over Fiber-Wireless Networks”. IEEE Network32 (1): 66–71. doi:10.1109/MNET.2018.1700139ISSN 1558-156XS2CID 12479631.
  153. ^ Cherupally, Sumanth Reddy; Boga, Srinivas; Podili, Prashanth; Kataoka, Kotaro (January 2021). “Lightweight and Scalable DAG based distributed ledger for verifying IoT data integrity”. 2021 International Conference on Information Networking (ICOIN). pp. 267–272. doi:10.1109/ICOIN50884.2021.9334000ISBN 978-1-7281-9101-0S2CID 231825899.
  154. ^ Fan, Xinxin; Chai, Qi; Xu, Lei; Guo, Dong (6 October 2020). “DIAM-IoT: A Decentralized Identity and Access Management Framework for Internet of Things”. Proceedings of the 2nd ACM International Symposium on Blockchain and Secure Critical Infrastructure. BSCI ’20. Taipei, Taiwan: Association for Computing Machinery. pp. 186–191. doi:10.1145/3384943.3409436ISBN 978-1-4503-7610-5S2CID 222142832.
  155. ^ Durand, Arnaud; Gremaud, Pascal; Pasquier, Jacques (22 October 2017). “Decentralized web of trust and authentication for the internet of things”. Proceedings of the Seventh International Conference on the Internet of Things. IoT ’17. Linz, Austria: Association for Computing Machinery. pp. 1–2. doi:10.1145/3131542.3140263ISBN 978-1-4503-5318-2S2CID 3645848.
  156. Jump up to:a b Gautier, Philippe; Gonzalez, Laurent (2011). L’Internet des Objets… Internet, mais en mieux (PDF). Foreword by Gérald Santucci (European commission), postword by Daniel Kaplan (FING) and Michel Volle. Paris: AFNOR editions. ISBN 978-2-12-465316-4.
  157. ^ Marginean, M.-T.; Lu, C. (2016). “sDOMO communication protocol for home robotic systems in the context of the internet of things”Computer Science, Technology And Application. World Scientific. pp. 151–60. ISBN 9789813200432.
  158. ^ Montazerolghaem, Ahmadreza (2021). “Software-defined Internet of Multimedia Things: Energy-efficient and Load-balanced Resource Management”IEEE Internet of Things Journal9 (3): 2432–2442. doi:10.1109/JIOT.2021.3095237ISSN 2327-4662S2CID 237801052.
  159. ^ Rowayda, A. Sadek (May 2018). “– An Agile Internet of Things (IoT) based Software Defined Network (SDN) Architecture” (PDF)Egyptian Computer Science Journal.
  160. ^ Montazerolghaem, Ahmadreza; Yaghmaee, Mohammad Hossein (April 2020). “Load-Balanced and QoS-Aware Software-Defined Internet of Things”IEEE Internet of Things Journal7 (4): 3323–3337. doi:10.1109/JIOT.2020.2967081ISSN 2327-4662S2CID 214551067.
  161. ^ Köhn, Rüdiger. “Online-Kriminalität: Konzerne verbünden sich gegen Hacker”Faz.net.
  162. ^ “OGC SensorThings API standard specification”OGC. Retrieved 15 February 2016.
  163. ^ “OGC Sensor Web Enablement: Overview And High Level Architecture”OGC. Retrieved 15 February 2016.
  164. ^ Minteer, A. (2017). “Chapter 9: Applying Geospatial Analytics to IoT Data”Analytics for the Internet of Things (IoT). Packt Publishing. pp. 230–57. ISBN 9781787127579.
  165. ^ van der Zee, E.; Scholten, H. (2014). “Spatial Dimensions of Big Data: Application of Geographical Concepts and Spatial Technology to the Internet of Things”. In Bessis, N.; Dobre, C. (eds.). Big Data and Internet of Things: A Roadmap for Smart Environments. Springer. pp. 137–68. ISBN 9783319050294.
  166. Jump up to:a b Gassée, J.-L. (12 January 2014). “Internet of Things: The “Basket of Remotes” Problem”Monday Note. Archived from the original on 27 June 2015. Retrieved 26 June 2015.
  167. ^ de Sousa, M. (2015). “Chapter 10: Integrating with Muzzley”Internet of Things with Intel Galileo. Packt Publishing. p. 163. ISBN 9781782174912.
  168. ^ “Social IoT”Enabling the Internet of ThingsIEEE. 2021. pp. 195–211. doi:10.1002/9781119701460.ch9ISBN 9781119701255S2CID 240696468. Retrieved 9 July 2021.
  169. ^ Saleem, Yasir; Crespi, Noel; Pace, Pasquale (April 2018). “SCDIoT: Social Cross-Domain IoT Enabling Application-to-Application Communications”2018 IEEE International Conference on Cloud Engineering (IC2E). Orlando, FL: IEEE. pp. 346–350. doi:10.1109/IC2E.2018.00068ISBN 978-1-5386-5008-0S2CID 21720322.
  170. Jump up to:a b c Afzal, Bilal; Umair, Muhammad; Asadullah Shah, Ghalib; Ahmed, Ejaz (March 2019). “Enabling IoT platforms for social IoT applications: Vision, feature mapping, and challenges”Future Generation Computer Systems92: 718–731. doi:10.1016/j.future.2017.12.002S2CID 57379503.
  171. ^ Bhatia, Munish; Sood, Sandeep K. (June 2020). “Quantum Computing-Inspired Network Optimization for IoT Applications”IEEE Internet of Things Journal7 (6): 5590–5598. doi:10.1109/JIOT.2020.2979887ISSN 2327-4662S2CID 215845606.
  172. ^ Cheng, Wai Khuen; Ileladewa, Adeoye Abiodun; Tan, Teik Boon (January 2019). “A Personalized Recommendation Framework for Social Internet of Things (SIoT)”2019 International Conference on Green and Human Information Technology (ICGHIT). pp. 24–29. doi:10.1109/ICGHIT.2019.00013ISBN 978-1-7281-0627-4S2CID 204702019.
  173. ^ Atzori, Luigi; Iera, Antonio; Morabito, Giacomo; Nitti, Michele (14 November 2012). “The Social Internet of Things (SIoT) – When social networks meet the Internet of Things: Concept, architecture and network characterization”Computer Networks56 (16): 3594–3608. doi:10.1016/j.comnet.2012.07.010ISSN 1389-1286.
  174. ^ Voutyras, Orfefs; Bourelos, Panagiotis; Gogouvitis, Spyridon; Kyriazis, Dimosthenis; Varvarigou, Theodora (17 February 2015). “Social monitoring and social analysis in internet of things virtual networks”2015 18th International Conference on Intelligence in Next Generation Networks. pp. 244–251. doi:10.1109/ICIN.2015.7073838ISBN 978-1-4799-1866-9.
  175. ^ Khelloufi, Amar; Ning, Huansheng; Dhelim, Sahraoui; Qiu, Tie; Ma, Jianhua; Huang, Runhe; Atzori, Luigi (1 February 2021). “A Social-Relationships-Based Service Recommendation System for SIoT Devices”IEEE Internet of Things Journal8 (3): 1859–1870. doi:10.1109/JIOT.2020.3016659ISSN 2327-4662S2CID 226476576.
  176. ^ Miori, Vittorio; Russo, Dario (June 2017). “Improving life quality for the elderly through the Social Internet of Things (SIoT)”2017 Global Internet of Things Summit (GIoTS). Geneva, Switzerland: IEEE. pp. 1–6. doi:10.1109/GIOTS.2017.8016215ISBN 978-1-5090-5873-0S2CID 7475703.
  177. ^ Udawant, Omkar; Thombare, Nikhil; Chauhan, Devanand; Hadke, Akash; Waghole, Dattatray (December 2017). “Smart ambulance system using IoT”2017 International Conference on Big Data, IoT and Data Science (BID). Pune, India: IEEE. pp. 171–176. doi:10.1109/BID.2017.8336593ISBN 978-1-5090-6593-6S2CID 4865714.
  178. ^ Saleem, Yasir; Crespi, Noel; Rehmani, Mubashir Husain; Copeland, Rebecca; Hussein, Dina; Bertin, Emmanuel (December 2016). “Exploitation of social IoT for recommendation services”2016 IEEE 3rd World Forum on Internet of Things (WF-IoT). Reston, VA, USA: IEEE. pp. 359–364. doi:10.1109/WF-IoT.2016.7845500ISBN 978-1-5090-4130-5S2CID 206866361.
  179. ^ Andrade, Rossana M.C.; Aragão, Belmondo R.; Oliveira, Pedro Almir M.; Maia, Marcio E.F.; Viana, Windson; Nogueira, Tales P. (April 2021). “Multifaceted infrastructure for self-adaptive IoT systems”Information and Software Technology132: 106505. doi:10.1016/j.infsof.2020.106505S2CID 231731945.
  180. ^ Farahbakhsh, Bahareh; Fanian, Ali; Manshaei, Mohammad Hossein (March 2021). “TGSM: Towards trustworthy group-based service management for social IoT”Internet of Things13: 100312. doi:10.1016/j.iot.2020.100312ISSN 2542-6605S2CID 228806944.
  181. ^ Iqbal, Muhammad Azhar; Hussain, Sajjad; Xing, Huanlai; Imran, Muhammad (February 2021). Enabling the Internet of Things: Fundamentals, Design, and Applications (1 ed.). Wiley. doi:10.1002/9781119701460.ch9ISBN 978-1-119-70125-5S2CID 240696468.
  182. ^ Want, Roy; Schilit, Bill N.; Jenson, Scott (2015). “Enabling the Internet of Things”. Computer48: 28–35. doi:10.1109/MC.2015.12S2CID 17384656.
  183. ^ “The Internet of Things: a jumbled mess or a jumbled mess?”The Register. Retrieved 5 June 2016.
  184. ^ “Can we talk? Internet of Things vendors face a communications ‘mess'”Computerworld. 18 April 2014. Retrieved 5 June 2016.[permanent dead link]
  185. ^ Hassan, Q.F. (2018). Internet of Things A to Z: Technologies and Applications. John Wiley & Sons. pp. 27–8. ISBN 9781119456759.
  186. ^ Dan Brickley et al., c. 2001
  187. ^ Sheng, M.; Qun, Y.; Yao, L.; Benatallah, B. (2017). Managing the Web of Things: Linking the Real World to the Web. Morgan Kaufmann. pp. 256–8. ISBN 9780128097656.
  188. ^ Waldner, Jean-Baptiste (2008). Nanocomputers and Swarm Intelligence. London: ISTE. pp. 227–231. ISBN 978-1-84704-002-2.
  189. Jump up to:a b Kushalnagar, N.; Montenegro, G.; Schumacher, C. (August 2007). IPv6 over Low-Power Wireless Personal Area Networks (6LoWPANs): Overview, Assumptions, Problem Statement, and GoalsIETFdoi:10.17487/RFC4919RFC 4919.
  190. Jump up to:a b Sun, Charles C. (1 May 2014). “Stop using Internet Protocol Version 4!”Computerworld.
  191. ^ Thomson, S.; Narten, T.; Jinmei, T. (September 2007). IPv6 Stateless Address AutoconfigurationIETFdoi:10.17487/RFC4862RFC 4862.
  192. ^ Alsulami, M. M.; Akkari, N. (April 2018). “The role of 5G wireless networks in the internet-of- things (IoT)”. 2018 1st International Conference on Computer Applications & Information Security (ICCAIS). pp. 1–8. doi:10.1109/CAIS.2018.8471687ISBN 978-1-5386-4427-0S2CID 52897932.
  193. ^ “5G Internet of Things”transformainsights.com. Retrieved 26 July 2022.
  194. ^ Woolley, Martin (6 June 2022), The Bluetooth Low Energy Primer (PDF), Bluetooth SIG, Inc.
  195. ^ Application Work Group Z-Wave Specifications Version 1.0, Z-Wave Alliance, 9 May 2022
  196. ^ G.9959: Short range narrow-band digital radiocommunication transceivers – PHY, MAC, SAR and LLC layer specifications, ITU, 13 January 2015, retrieved 20 December 2022
  197. ^ zigbee Specification Revision 22 1.0, zigbee alliance, 19 April 2017
  198. ^ Matter Specification Version 1.0, Connectivity Standards Alliance, 28 September 2022
  199. ^ Eddy, Wesley (18 August 2022), Transmission Control Protocol (TCP), Internet Engineering Task Force, retrieved 20 December 2022
  200. ^ User Datagram Protocol, Internet Engineering Task Force, 2 March 2013, retrieved 20 December 2022
  201. ^ “Thread Primer”OpenThread. 10 October 2022. Retrieved 20 December 2022.
  202. ^ “IEEE Standard for Low-Rate Wireless Networks”. IEEE STD 802.15.4-2020 (Revision of IEEE STD 802.15.4-2015): 1–800. 23 July 2020. doi:10.1109/IEEESTD.2020.9144691ISBN 978-1-5044-6689-9.
  203. ^ Deering, Steve E.; Hinden, Bob (July 2017), Internet Protocol, Version 6 (IPv6) Specification, Internet Engineering Task Force, retrieved 20 December 2022
  204. ^ “IEEE Standard for Ethernet”. IEEE STD 802.3-2018 (Revision of IEEE STD 802.3-2015): 1–5600. 31 August 2018. doi:10.1109/IEEESTD.2018.8457469ISBN 978-1-5044-5090-4.
  205. ^ “IEEE Standard for Information Technology–Telecommunications and Information Exchange between Systems – Local and Metropolitan Area Networks–Specific Requirements – Part 11: Wireless LAN Medium Access Control (MAC) and Physical Layer (PHY) Specifications”. IEEE STD 802.11-2020 (Revision of IEEE STD 802.11-2016): 1–4379. 26 February 2021. doi:10.1109/IEEESTD.2021.9363693ISBN 978-1-5044-7283-8.
  206. ^ Jing, J.; Li, H. (2012). “Research on the Relevant Standards of Internet of Things”. In Wang, Y.; Zhang, X. (eds.). Internet of Things: International Workshop, IOT 2012. Springer. pp. 627–32. ISBN 9783642324277.
  207. ^ Mahmood, Z. (2018). Connected Environments for the Internet of Things: Challenges and Solutions. Springer. pp. 89–90. ISBN 9783319701028.
  208. ^ “Project Connected Home over IP”Google Developers Blog. Retrieved 16 September 2020.
  209. ^ Mihalcik, Carrie. “Apple, Amazon, Google, and others want to create a new standard for smart home tech”CNET. Retrieved 24 December 2019.
  210. ^ Strategy, Moor Insights and. “CHIP Shot: Will Project Connected Home Over IP Get Us Onto The IoT Green?”Forbes. Retrieved 3 September 2020.
  211. ^ “Digital Link – Standards | GS1”www.gs1.org. 12 November 2018. Retrieved 28 April 2020.
  212. ^ “P1451-99 – Standard for Harmonization of Internet of Things (IoT) Devices and Systems”. IEEE. Archived from the original on 16 March 2020. Retrieved 26 July 2021.
  213. ^ Howard, Philip N. (1 June 2015). “The Internet of Things is Posed to Change Democracy Itself”Politico. Retrieved 8 August 2017.
  214. ^ Thompson, Kirsten; Mattalo, Brandon (24 November 2015). “The Internet of Things: Guidance, Regulation and the Canadian Approach”CyberLex. Retrieved 23 October 2016.
  215. ^ “The Question of Who Owns the Data Is About to Get a Lot Trickier”Fortune. 6 April 2016. Retrieved 23 October 2016.
  216. ^ Weber, R.H.; Weber, R. (2010). Internet of Things: Legal Perspectives. Springer Science & Business Media. pp. 59–64. ISBN 9783642117107.
  217. ^ Hassan, Q.F. (2018). Internet of Things A to Z: Technologies and Applications. John Wiley & Sons. pp. 41–4. ISBN 9781119456759.
  218. ^ Hassan, Q.F.; Khan, A. ur R.; Madani, S.A. (2017). Internet of Things: Challenges, Advances, and Applications. CRC Press. pp. 41–2. ISBN 9781498778534.
  219. ^ Lopez, Javier; Rios, Ruben; Bao, Feng; Wang, Guilin (2017). “Evolving privacy: From sensors to the Internet of Things”. Future Generation Computer Systems75: 46–57. doi:10.1016/j.future.2017.04.045.
  220. ^ “FTC Report on Internet of Things Urges Companies to Adopt Best Practices to Address Consumer Privacy and Security Risks”Federal Trade Commission. 27 January 2015. Retrieved 13 September 2024.
  221. ^ Brown, Ian (2015). “Regulation and the Internet of Things” (PDF)Oxford Internet Institute. Retrieved 23 October 2016.
  222. ^ “FTC Report on Internet of Things Urges Companies to Adopt Best Practices to Address Consumer Privacy and Security Risks”Federal Trade Commission. 27 January 2015. Retrieved 23 October 2016.
  223. ^ Lawson, Stephen (2 March 2016). “IoT users could win with a new bill in the US Senate”Tech Barrista. Retrieved 9 December 2019.
  224. ^ “California Legislative Information – SB-327 Information privacy: connected devices”.
  225. ^ Pittman, F. Paul (2 February 2016). “Legal Developments in Connected Car Arena Provide Glimpse of Privacy and Data Security Regulation in Internet of Things”Lexology. Retrieved 23 October 2016.
  226. ^ Rasit, Yuce, Mehmet; Claus, Beisswenger, Stefan; Mangalam, Srikanth; Das, Prasanna, Lal; Martin, Lukac (2 November 2017). “Internet of things : the new government to business platform – a review of opportunities, practices, and challenges”: 1–112. {{cite journal}}Cite journal requires |journal= (help)
  227. Jump up to:a b Page, Carly (4 December 2021). “Is the UK government’s new IoT cybersecurity bill fit for purpose?”TechCrunch. Retrieved 4 December 2021.
  228. ^ Wieland, Ken (25 February 2016). “IoT experts fret over fragmentation”Mobile World.
  229. ^ Wallace, Michael (19 February 2016). “Fragmentation is the enemy of the Internet of Things”Qualcomm.com.
  230. ^ Bauer, Harald; Patel, Mark; Veira, Jan (October 2015). “Internet of Things: Opportunities and challenges for semiconductor companies”McKinsey & Co.
  231. ^ Ardiri, Aaron (8 July 2014). “Will fragmentation of standards only hinder the true potential of the IoT industry?”evothings.com. Archived from the original on 27 February 2021. Retrieved 23 September 2016.
  232. ^ “IOT Brings Fragmentation in Platform” (PDF)arm.com.
  233. ^ Raggett, Dave (27 April 2016). “Countering Fragmentation with the Web of Things: Interoperability across IoT platforms” (PDF)W3C.
  234. ^ Kovach, Steve (30 July 2013). “Android Fragmentation Report”Business Insider. Retrieved 19 October 2013.
  235. ^ “Ultimate Guide to Internet of Things (IoT) Connectivity”.
  236. ^ Piedad, Floyd N. (8 July 2024). “Will Android fragmentation spoil its IoT appeal?”TechBeacon.
  237. ^ Franceschi-Bicchierai, Lorenzo (29 July 2015). “Goodbye, Android”Motherboard. Vice.
  238. ^ Kingsley-Hughes, Adrian. “The toxic hellstew survival guide”ZDnet. Retrieved 2 August 2015.
  239. ^ Tung, Liam (13 October 2015). “Android security a ‘market for lemons’ that leaves 87 percent vulnerable”ZDNet. Retrieved 14 October 2015.
  240. ^ Thomas, Daniel R.; Beresford, Alastair R.; Rice, Andrew (2015). Proceedings of the 5th Annual ACM CCS Workshop on Security and Privacy in Smartphones and Mobile Devices – SPSM ’15 (PDF)Computer Laboratory, University of Cambridge. pp. 87–98. doi:10.1145/2808117.2808118ISBN 9781450338196S2CID 14832327. Retrieved 14 October 2015.
  241. ^ Howard, Philip N. (2015). Pax Technica: How the internet of things May Set Us Free, Or Lock Us Up. New Haven, CT: Yale University Press. ISBN 978-0-30019-947-5.
  242. ^ McEwan, Adrian (2014). “Designing the Internet of Things” (PDF). Retrieved 1 June 2016.
  243. ^ Moy de Vitry, Matthew; Schneider, Mariane; Wani, Omar; Liliane, Manny; Leitao, João P.; Eggimann, Sven (2019). “Smart urban water systems: what could possibly go wrong?”Environmental Research Letters14 (8): 081001. Bibcode:2019ERL….14h1001Mdoi:10.1088/1748-9326/ab3761hdl:20.500.11850/362196.
  244. ^ “Panopticon as a metaphor for the internet of things” (PDF)The Council of the Internet of Things. Archived from the original (PDF) on 27 September 2017. Retrieved 6 June 2016.
  245. Jump up to:a b “Foucault” (PDF). UCLA.
  246. ^ “Deleuze – 1992 – Postscript on the Societies of Control” (PDF). UCLA.
  247. ^ Verbeek, Peter-Paul (2011). Moralizing Technology: Understanding and Designing the Morality of Things. Chicago: The University of Chicago Press. ISBN 978-0-22685-291-1.
  248. ^ Cardwell, Diane (18 February 2014). “At Newark Airport, the Lights Are On, and They’re Watching You”The New York Times.
  249. ^ Hardy, Quentin (4 February 2015). “Tim O’Reilly Explains the Internet of Things”The New York Times.
  250. ^ Webb, Geoff (5 February 2015). “Say Goodbye to Privacy”WIRED. Retrieved 15 February 2015.
  251. ^ Crump, Catherine; Harwood, Matthew (25 March 2014). “The Net Closes Around Us”TomDispatch.
  252. ^ Brown, Ian (12 February 2013). “Britain’s Smart Meter Programme: A Case Study in Privacy by Design”. International Review of Law, Computers & Technology28 (2): 172–184. doi:10.1080/13600869.2013.801580S2CID 62756630SSRN 2215646.
  253. Jump up to:a b “The Societal Impact of the Internet of Things” (PDF)British Computer Society. 14 February 2013. Retrieved 23 October 2016.
  254. Jump up to:a b Gubbi, Jayavardhana; Buyya, Rajkumar; Marusic, Slaven; Palaniswami, Marimuthu (1 September 2013). “Internet of Things (IoT): A vision, architectural elements, and future directions”. Future Generation Computer Systems. Including Special sections: Cyber-enabled Distributed Computing for Ubiquitous Cloud and Network Services & Cloud Computing and Scientific Applications – Big Data, Scalable Analytics, and Beyond. 29 (7): 1645–1660. arXiv:1207.0203doi:10.1016/j.future.2013.01.010S2CID 204982032.
  255. ^ Acharjya, D.P.; Ahmed, N.S.S. (2017). “Recognizing Attacks in Wireless Sensor Network in View of Internet of Things”. In Acharjya, D.P.; Geetha, M.K. (eds.). Internet of Things: Novel Advances and Envisioned Applications. Springer. pp. 149–50. ISBN 9783319534725.
  256. ^ Hussain, A. (June 2017). “Energy Consumption of Wireless IoT Nodes” (PDF). Norwegian University of Science and Technology. Retrieved 26 July 2018.
  257. Jump up to:a b c d Keller, Matthias (2021). “I4.0 Strategy and Policy Integration in The German Machining Industry”KU Leuven, WWU, TalTech.
  258. ^ “We Asked Executives About The Internet of Things And Their Answers Reveal That Security Remains A Huge Concern”Business Insider. Retrieved 26 June 2015.
  259. ^ Singh, Jatinder; Pasquier, Thomas; Bacon, Jean; Ko, Hajoon; Eyers, David (2015). “Twenty Cloud Security Considerations for Supporting the Internet of Things”IEEE Internet of Things Journal3 (3): 1. doi:10.1109/JIOT.2015.2460333S2CID 4732406.
  260. Jump up to:a b Clearfield, Chris. “Why The FTC Can’t Regulate The Internet of Things”Forbes. Retrieved 26 June 2015.
  261. Jump up to:a b Feamster, Nick (18 February 2017). “Mitigating the Increasing Risks of an Insecure Internet of Things”. Freedom to Tinker. Retrieved 8 August 2017.
  262. ^ Ziegeldorf, Jan Henrik; Morchon, Oscar Garcia; Wehrle, Klaus (10 June 2013). “Privacy in the Internet of Things: threats and challenges”Security and Communication Networks7 (12): 2728–2742. arXiv:1505.07683doi:10.1002/sec.795ISSN 1939-0114S2CID 1208330.
  263. ^ Li, S. (2017). “Chapter 1: Introduction: Securing the Internet of Things”. In Li, S.; Xu, L.D. (eds.). Securing the Internet of Things. Syngress. p. 4. ISBN 9780128045053.
  264. ^ Bastos, D.; Shackleton, M.; El-Moussa, F. (2018). “Internet of Things: A Survey of Technologies and Security Risks in Smart Home and City Environments”. Living in the Internet of Things: Cybersecurity of the IoT – 2018. pp. 30 (7 pp.). doi:10.1049/cp.2018.0030ISBN 9781785618437.
  265. ^ Harbi, Yasmine; Aliouat, Zibouda; Harous, Saad; Bentaleb, Abdelhak; Refoufi, Allaoua (September 2019). “A Review of Security in Internet of Things”Wireless Personal Communications108 (1): 325–344. doi:10.1007/s11277-019-06405-yISSN 0929-6212S2CID 150181134.
  266. ^ Liu, Ximeng; Yang, Yang; Choo, Kim-Kwang Raymond; Wang, Huaqun (24 September 2018). “Security and Privacy Challenges for Internet-of-Things and Fog Computing”Wireless Communications and Mobile Computing2018: 1–3. doi:10.1155/2018/9373961ISSN 1530-8669.
  267. ^ Morrissey, Janet (22 January 2019). “In the Rush to Join the Smart Home Crowd, Buyers Should Beware”The New York TimesISSN 0362-4331. Retrieved 26 February 2020.
  268. ^ Ahmadi, Mohsen; Kiaei, Pantea; Emamdoost, Navid (2021). SN4KE: Practical Mutation Testing at Binary Level (PDF) (MSc). NDSS Symposium 2021.
  269. ^ Clearfield, Christopher (26 June 2013). “Rethinking Security for the Internet of Things”Harvard Business Review Blog.
  270. ^ Witkovski, Adriano; Santin, Altair; Abreu, Vilmar; Marynowski, Joao (2014). “An IdM and Key-Based Authentication Method for Providing Single Sign-On in IoT”2015 IEEE Global Communications Conference (GLOBECOM). pp. 1–6. doi:10.1109/GLOCOM.2014.7417597ISBN 978-1-4799-5952-5S2CID 8108114.
  271. ^ Steinberg, Joseph (27 January 2014). “These Devices May Be Spying on You (Even in Your Own Home)”Forbes. Retrieved 27 May 2014.
  272. ^ Greenberg, Andy (21 July 2015). “Hackers Remotely Kill a Jeep on the Highway—With Me in It”Wired. Retrieved 21 July 2015.
  273. ^ Scientific American, April 2015, p.68.
  274. ^ Loukas, George (June 2015). Cyber-Physical Attacks A growing invisible threat. Oxford, UK: Butterworh-Heinemann (Elsevier). p. 65. ISBN 9780128012901.
  275. ^ Woolf, Nicky (26 October 2016). “DDoS attack that disrupted internet was largest of its kind in history, experts say”The Guardian.
  276. Jump up to:a b c d e Antonakakis, Manos; April, Tim; Bailey, Michael; Bernhard, Matt; Bursztein, Elie; Cochran, Jaime; Durumeric, Zakir; Halderman, J. Alex; Invernizzi, Luca (18 August 2017). Understanding the Mirai Botnet (PDF). USENIX Association. ISBN 978-1-931971-40-9. Retrieved 13 May 2018. {{cite book}}|website= ignored (help)
  277. ^ “The “anti-patterns” that turned the IoT into the Internet of Shit / Boing Boing”boingboing.net. 3 May 2017.
  278. ^ Ali, Junade (2 May 2017). “IoT Security Anti-Patterns”Cloudflare Blog.
  279. ^ Schneier, Bruce (6 October 2016). “We Need to Save the Internet from the Internet of Things”Motherboard.
  280. ^ “Disruptive Technologies Global Trends 2025” (PDF)National Intelligence Council (NIC). April 2008. p. 27.
  281. ^ Ackerman, Spencer (15 March 2012). “CIA Chief: We’ll Spy on You Through Your Dishwasher”WIRED. Retrieved 26 June 2015.
  282. ^ “The doorbells have eyes: The privacy battle brewing over home security cameras”Washington Post. Retrieved 3 February 2019.
  283. ^ “Building the Web of Things – Mozilla Hacks – the Web developer blog”Mozilla Hacks – the Web developer blog.
  284. ^ “The Step Towards Innovation”.
  285. ^ “Global IoT Security Market to reach a market size of $29.2 billion by 2022”.
  286. ^ Ward, Mark (23 September 2015). “Smart devices to get security tune-up”BBC News.
  287. ^ “Executive Steering Board”IoT Security Foundation.
  288. ^ Schneier, Bruce (1 February 2017). “Security and the Internet of Things”.
  289. ^ Alfandi, Omar; Hasan, Musaab; Balbahaith, Zayed (2019), “Assessment and Hardening of IoT Development Boards”, Wired/Wireless Internet Communications, Lecture Notes in Computer Science, vol. 11618, Springer International Publishing, pp. 27–39, doi:10.1007/978-3-030-30523-9_3ISBN 978-3-030-30522-2S2CID 202550425
  290. Jump up to:a b c Nguyen, Dang Tu; Song, Chengyu; Qian, Zhiyun; V. Krishnamurthy, Srikanth; J. M. Colbert, Edward; McDaniel, Patrick (2018). IoTSan: Fortifying the Safety of IoT Systems. Proc. of the 14th International Conference on emerging Networking EXperiments and Technologies (CoNEXT ’18). Heraklion, Greece. arXiv:1810.09551doi:10.1145/3281411.3281440. arXiv:1810.09551.
  291. ^ “SmartThings”SmartThings.com.
  292. ^ “HomeKit – Apple Developer”developer.apple.com.
  293. ^ “Amazon Alexa”developer.amazon.com.
  294. Jump up to:a b Fielding, Roy Thomas (2000). “Architectural Styles and the Design of Network-based Software Architectures” (PDF)University of California, Irvine.
  295. ^ Littman, Michael; Kortchmar, Samuel (11 June 2014). “The Path to a Programmable World”Footnote. Archived from the original on 3 July 2014. Retrieved 14 June 2014.
  296. ^ Finley, Klint (6 May 2014). “The Internet of Things Could Drown Our Environment in Gadgets”Wired.
  297. ^ Light, A.; Rowland, C. (2015). “Chapter 11: Responsible IoT Design”. In Rowland, C.; Goodman, E.; Charlier, M.; et al. (eds.). Designing Connected Products: UX for the Consumer Internet of Things. O’Reilly Media. pp. 457–64. ISBN 9781449372569.
  298. ^ Gilbert, Arlo (3 April 2016). “The time that Tony Fadell sold me a container of hummus”. Retrieved 7 April 2016.
  299. Jump up to:a b c Walsh, Kit (5 April 2016). “Nest Reminds Customers That Ownership Isn’t What It Used to Be”Electronic Frontier Foundation. Retrieved 7 April 2016.
  300. Jump up to:a b c d “Taming the IoT terminology zoo: what does it all mean?”Information Age. Vitesse Media Plc. 30 July 2015.
  301. Jump up to:a b “Technology Working Group”. The Industrial Internet Consortium. Retrieved 21 March 2017.
  302. ^ “Vocabulary Technical Report”. The Industrial Internet Consortium. Retrieved 21 March 2017.
  303. ^ “Acceleration Sensing”. IoT One. Retrieved 21 March 2017.
  304. ^ “IoT Terms Database”. IoT One. Retrieved 21 March 2017.
  305. ^ “Quick Guide”IoT ONE. Retrieved 26 July 2018.
  306. ^ “Why The Consumer Internet of Things Is Stalling”Forbes. Retrieved 24 March 2017.
  307. Jump up to:a b c d e “Every. Thing. Connected. A study of the adoption of ‘Internet of Things’ among Danish companies” (PDF). Ericsson. Retrieved 2 May 2020.
  308. ^ Zhang, Zhi-Kai; Cho, Michael Cheng Yi; Wang, Chia-Wei; Hsu, Chia-Wei; Chen, Chong-Kuan; Shieh, Shiuhpyng (2014). “IoT Security: Ongoing Challenges and Research Opportunities”. 2014 IEEE 7th International Conference on Service-Oriented Computing and Applications. pp. 230–234. doi:10.1109/SOCA.2014.58ISBN 978-1-4799-6833-6S2CID 18445510.
  309. ^ Khan, Minhaj Ahmad; Salah, Khaled (2018). “IoT security: Review, blockchain solutions, and open challenges”. Future Generation Computer Systems82: 395–411. doi:10.1016/j.future.2017.11.022S2CID 3639079.
  310. ^ Zhou, Wei; Jia, Yan; Peng, Anni; Zhang, Yuqing; Liu, Peng (2019). “The Effect of IoT New Features on Security and Privacy: New Threats, Existing Solutions, and Challenges Yet to be Solved”. IEEE Internet of Things Journal6 (2): 1606–1616. arXiv:1802.03110doi:10.1109/JIOT.2018.2847733S2CID 31057653.
  311. ^ Supriya, S.; Padaki, Sagar (2016). “Data Security and Privacy Challenges in Adopting Solutions for IOT”. 2016 IEEE International Conference on Internet of Things (iThings) and IEEE Green Computing and Communications (GreenCom) and IEEE Cyber, Physical and Social Computing (CPSCom) and IEEE Smart Data (SmartData). pp. 410–415. doi:10.1109/iThings-GreenCom-CPSCom-SmartData.2016.97ISBN 978-1-5090-5880-8S2CID 34661195.
  312. ^ “California Legislative Information”.
  313. ^ “Oregon State Legislature”. Archived from the original on 30 September 2020. Retrieved 14 October 2020.
  314. Jump up to:a b c d Anthony, Scott (15 July 2016). “Disruptive Innovation: Kodak’s Downfall Wasn’t About Technology”Harvard Business Review. Harvard Business Publishing. Retrieved 30 March 2017.
  315. ^ “World Economic Forum: The Next Economic Growth Engine – Scaling Fourth Industrial Revolution Technologies in Production” (PDF)World Economic Forum. January 2018. p. 4.
  316. ^ at 11:15, Kat Hall 23 May 2017. “Three-quarters of IoT projects are failing, says Cisco”www.theregister.co.uk. Retrieved 29 January 2020.
  317. ^ Prasher, V. S.; Onu, Stephen (15 September 2020). “The Internet of Things (IoT) upheaval: overcoming management challenges”The Journal of Modern Project Management8 (2). doi:10.19255/JMPM02402 (inactive 1 November 2024). ISSN 2317-3963.
  1. Joshi, Chanchala; Singh, Umesh Kumar (August 2017). “Information security risks management framework – A step towards mitigating security risks in university network”Journal of Information Security and Applications35: 128–137. doi:10.1016/j.jisa.2017.06.006ISSN 2214-2126.
  2. ^ Daniel, Kent; Titman, Sheridan (August 2006). “Market Reactions to Tangible and Intangible Information”The Journal of Finance61 (4): 1605–1643. doi:10.1111/j.1540-6261.2006.00884.xSSRN 414701.
  3. ^ Fink, Kerstin (2004). Knowledge Potential Measurement and Uncertainty. Deutscher Universitätsverlag. ISBN 978-3-322-81240-7OCLC 851734708.
  4. ^ Keyser, Tobias (April 19, 2018), “Security policy”The Information Governance Toolkit, CRC Press, pp. 57–62, doi:10.1201/9781315385488-13ISBN 978-1-315-38548-8, retrieved May 28, 2021
  5. ^ Danzig, Richard; National Defense University Washington DC Inst for National Strategic Studies (1995). “The big three: Our greatest security risks and how to address them”DTIC ADA421883.
  6. ^ Lyu, M.R.; Lau, L.K.Y. (2000). “Firewall security: Policies, testing and performance evaluation”Proceedings 24th Annual International Computer Software and Applications Conference. COMPSAC2000. IEEE Comput. Soc. pp. 116–121. doi:10.1109/cmpsac.2000.884700ISBN 0-7695-0792-1S2CID 11202223.
  7. ^ “How the Lack of Data Standardization Impedes Data-Driven Healthcare”Data-Driven Healthcare, Hoboken, NJ, US: John Wiley & Sons, Inc., p. 29, October 17, 2015, doi:10.1002/9781119205012.ch3ISBN 978-1-119-20501-2, retrieved May 28, 2021
  8. ^ Cherdantseva Y. and Hilton J.: “Information Security and Information Assurance. The Discussion about the Meaning, Scope and Goals”. In: Organizational, Legal, and Technological Dimensions of Information System Administrator. Almeida F., Portela, I. (eds.). IGI Global Publishing. (2013)
  9. ^ ISO/IEC 27000:2018 (E). (2018). Information technology – Security techniques – Information security management systems – Overview and vocabulary. ISO/IEC.
  10. ^ Committee on National Security Systems: National Information Assurance (IA) Glossary, CNSS Instruction No. 4009, 26 April 2010.
  11. ^ ISACA. (2008). Glossary of terms, 2008. Retrieved from http://www.isaca.org/Knowledge-Center/Documents/Glossary/glossary.pdf
  12. ^ Pipkin, D. (2000). Information security: Protecting the global enterprise. New York: Hewlett-Packard Company.
  13. ^ B., McDermott, E., & Geer, D. (2001). Information security is information risk management. In Proceedings of the 2001 Workshop on New Security Paradigms NSPW ‘01, (pp. 97 – 104). ACM. doi:10.1145/508171.508187
  14. ^ Anderson, J. M. (2003). “Why we need a new definition of information security”. Computers & Security22 (4): 308–313. doi:10.1016/S0167-4048(03)00407-3.
  15. ^ Venter, H. S.; Eloff, J. H. P. (2003). “A taxonomy for information security technologies”. Computers & Security22 (4): 299–307. doi:10.1016/S0167-4048(03)00406-1.
  16. ^ Gold, S (December 2004). “Threats looming beyond the perimeter”Information Security Technical Report9 (4): 12–14. doi:10.1016/s1363-4127(04)00047-0ISSN 1363-4127.
  17. ^ Бучик, С. С.; Юдін, О. К.; Нетребко, Р. В. (December 21, 2016). “The analysis of methods of determination of functional types of security of the information-telecommunication system from an unauthorized access”Problems of Informatization and Management4 (56). doi:10.18372/2073-4751.4.13135ISSN 2073-4751.
  18. Jump up to:a b Samonas, S.; Coss, D. (2014). “The CIA Strikes Back: Redefining Confidentiality, Integrity and Availability in Security”Journal of Information System Security10 (3): 21–45. Archived from the original on September 22, 2018. Retrieved January 25, 2018.
  19. ^ “Gartner Says Digital Disruptors Are Impacting All Industries; Digital KPIs Are Crucial to Measuring Success”. Gartner. October 2, 2017. Retrieved January 25, 2018.
  20. ^ “Gartner Survey Shows 42 Percent of CEOs Have Begun Digital Business Transformation”. Gartner. April 24, 2017. Retrieved January 25, 2018.
  21. ^ Forte, Dario; Power, Richard (December 2007). “Baseline controls in some vital but often-overlooked areas of your information protection programme”Computer Fraud & Security2007 (12): 17–20. doi:10.1016/s1361-3723(07)70170-7ISSN 1361-3723.
  22. ^ Low-voltage switchgear and controlgear. Device profiles for networked industrial devices, BSI British Standards, doi:10.3403/bsen61915, retrieved May 28, 2021
  23. ^ Fetzer, James; Highfill, Tina; Hossiso, Kassu; Howells, Thomas; Strassner, Erich; Young, Jeffrey (November 2018). “Accounting for Firm Heterogeneity within U.S. Industries: Extended Supply-Use Tables and Trade in Value Added using Enterprise and Establishment Level Data”. Working Paper Series. National Bureau of Economic Researchdoi:10.3386/w25249S2CID 169324096.
  24. ^ “Secure estimation subject to cyber stochastic attacks”Cloud Control Systems, Emerging Methodologies and Applications in Modelling, Elsevier: 373–404, 2020, doi:10.1016/b978-0-12-818701-2.00021-4ISBN 978-0-12-818701-2S2CID 240746156, retrieved May 28, 2021
  25. ^ Nijmeijer, H. (2003). Synchronization of mechanical systems. World Scientific. ISBN 978-981-279-497-0OCLC 262846185.
  26. ^ “9 Types of Cybersecurity Specializations”.
  27. ^ Information technology. Security techniques. Competence requirements for information security management systems professionals, BSI British Standards, doi:10.3403/30342674, retrieved May 29, 2021
  28. ^ Rahim, Noor H. (March 2006). Human Rights and Internal Security in Malaysia: Rhetoric and Reality. Defense Technical Information Center. OCLC 74288358.
  29. ^ Kramer, David (September 14, 2018). “Nuclear theft and sabotage threats remain high, report warns”Physics Today (9): 30951. Bibcode:2018PhT..2018i0951Kdoi:10.1063/pt.6.2.20180914aISSN 1945-0699S2CID 240223415.
  30. ^ Wilding, Edward (March 2, 2017). Information risk and security : preventing and investigating workplace computer crime. Routledge. ISBN 978-1-351-92755-0OCLC 1052118207.
  31. ^ Stewart, James (2012). CISSP Study Guide. Canada: John Wiley & Sons. pp. 255–257. ISBN 978-1-118-31417-3.
  32. ^ “Why has productivity growth declined?”OECD Economic Surveys: Denmark 2009OECD. 2009. pp. 65–96. doi:10.1787/eco_surveys-dnk-2009-4-enISBN 9789264076556. Retrieved November 30, 2023.
  33. ^ “Identity Theft: The Newest Digital Attackking Industry Must Take Seriously”Issues in Information Systems. 2007. doi:10.48009/2_iis_2007_297-302ISSN 1529-7314.
  34. ^ Wendel-Persson, Anna; Ronnhed, Fredrik (2017). IT-säkerhet och människan : De har världens starkaste mur men porten står alltid på glänt. Umeå universitet, Institutionen för informatik. OCLC 1233659973.
  35. ^ Shao, Ruodan; Skarlicki, Daniel P. (2014). “Sabotage toward the Customers who Mistreated Employees Scale”PsycTESTS Datasetdoi:10.1037/t31653-000. Retrieved May 28, 2021.
  36. ^ Kitchen, Julie (June 2008). “7side – Company Information, Company Formations and Property Searches”Legal Information Management8 (2): 146. doi:10.1017/s1472669608000364ISSN 1472-6696S2CID 144325193.
  37. ^ Young, Courtenay (May 8, 2018), “Working with panic attacks”Help Yourself Towards Mental Health, Routledge, pp. 209–214, doi:10.4324/9780429475474-32ISBN 978-0-429-47547-4, retrieved May 28, 2021
  38. ^ Lequiller, F.; Blades, D. (2014). Table 7.7 France: Comparison of the profit shares of non-financial corporations and non-financial corporations plus unincorporated enterprises (PDF)OECD. p. 217. doi:10.1787/9789264214637-enISBN 978-92-64-21462-0. Retrieved December 1, 2023.
  39. ^ “How Did it All Come About?”, The Compliance Business and Its Customers, Basingstoke: Palgrave Macmillan, 2012, doi:10.1057/9781137271150.0007ISBN 978-1-137-27115-0
  40. ^ Gordon, Lawrence A.Loeb, Martin P. (November 2002). “The Economics of Information Security Investment”ACM Transactions on Information and System Security5 (4): 438–457. doi:10.1145/581271.581274S2CID 1500788.
  41. ^ Cho Kim, Byung; Khansa, Lara; James, Tabitha (July 2011). “Individual Trust and Consumer Risk Perception”Journal of Information Privacy and Security7 (3): 3–22. doi:10.1080/15536548.2011.10855915ISSN 1553-6548S2CID 144643691.
  42. ^ Larsen, Daniel (October 31, 2019). “Creating An American Culture Of Secrecy: Cryptography In Wilson-Era Diplomacy”Diplomatic Historydoi:10.1093/dh/dhz046ISSN 0145-2096.
  43. ^ “Introduction : Caesar Is Dead. Long Live Caesar!”Julius Caesar’s Self-Created Image and Its Dramatic Afterlife, Bloomsbury Academic, 2018, doi:10.5040/9781474245784.0005ISBN 978-1-4742-4578-4, retrieved May 29, 2021
  44. ^ Suetonius Tranquillus, Gaius (2008). Lives of the Caesars (Oxford World’s Classics). New York: Oxford University Press. p. 28. ISBN 978-0-19-953756-3.
  45. ^ Singh, Simon (2000). The Code Book. Anchor. pp. 289–290ISBN 978-0-385-49532-5.
  46. ^ Tan, Heng Chuan (2017). Towards trusted and secure communications in a vehicular environment (Thesis). Nanyang Technological University. doi:10.32657/10356/72758.
  47. ^ Johnson, John (1997). The Evolution of British Sigint: 1653–1939. Her Majesty’s Stationery Office. ASIN B00GYX1GX2.
  48. ^ Willison, M. (September 21, 2018). “Were Banks Special? Contrasting Viewpoints in Mid-Nineteenth Century Britain”Monetary Economics: International Financial Flowsdoi:10.2139/ssrn.3249510. Retrieved December 1, 2023.
  49. ^ Ruppert, K. (2011). “Official Secrets Act (1889; New 1911; Amended 1920, 1939, 1989)”. In Hastedt, G.P. (ed.). Spies, Wiretaps, and Secret Operations: An Encyclopedia of American Espionage. Vol. 2. ABC-CLIO. pp. 589–590. ISBN 9781851098088.
  50. ^ “2. The Clayton Act: A consideration of section 2, defining unlawful price discrimination”The Federal Anti-Trust Law. Columbia University Press. December 31, 1930. pp. 18–28. doi:10.7312/dunn93452-003ISBN 978-0-231-89377-0. Retrieved May 29, 2021.
  51. ^ Maer, Lucinda; Gay (December 30, 2008). “Official Secrecy” (PDF)Federation of American Scientists.
  52. ^ “The Official Secrets Act 1989 which replaced section 2 of the 1911 Act”, Espionage and Secrecy (Routledge Revivals), Routledge, pp. 267–282, June 10, 2016, doi:10.4324/9781315542515-21 (inactive November 1, 2024), ISBN 978-1-315-54251-5
  53. ^ “Official Secrets Act: what it covers; when it has been used, questioned”The Indian Express. March 8, 2019. Retrieved August 7, 2020.
  54. ^ Singh, Gajendra (November 2015). “”Breaking the Chains with Which We were Bound”: The Interrogation Chamber, the Indian National Army and the Negation of Military Identities, 1941–1947″Brill’s Digital Library of World War Idoi:10.1163/2352-3786_dlws1_b9789004211452_019. Retrieved May 28, 2021.
  55. ^ Duncanson, Dennis (June 1982). “The scramble to unscramble French Indochina”Asian Affairs13 (2): 161–170. doi:10.1080/03068378208730070ISSN 0306-8374.
  56. ^ Whitman et al. 2017, pp. 3.
  57. ^ “Allied Power. Mobilizing Hydro-Electricity During Canada’S Second World War”Allied Power, University of Toronto Press, pp. 1–2, December 31, 2015, doi:10.3138/9781442617117-003ISBN 978-1-4426-1711-7, retrieved May 29, 2021
  58. ^ Glatthaar, Joseph T. (June 15, 2011), “Officers and Enlisted Men”Soldiering in the Army of Northern Virginia, University of North Carolina Press, pp. 83–96, doi:10.5149/9780807877869_glatthaar.11ISBN 978-0-8078-3492-3, retrieved May 28, 2021
  59. Jump up to:a b Sebag–Montefiore, H. (2011). Enigma: The Battle for the Code. Orion. p. 576. ISBN 9781780221236.
  60. ^ Whitman et al. 2017, pp. 4–5.
  61. Jump up to:a b Whitman et al. 2017, p. 5.
  62. ^ Dekar, Paul R. (April 26, 2012). Thomas Merton: Twentieth-Century Wisdom for Twenty-First-Century Living. The Lutterworth Press. pp. 160–184. doi:10.2307/j.ctt1cg4k28.13ISBN 978-0-7188-4069-3. Retrieved May 29, 2021.
  63. ^ Murphy, Richard C. (September 1, 2009). Building more powerful less expensive supercomputers using Processing-In-Memory (PIM) LDRD final report (Report). doi:10.2172/993898.
  64. ^ “A Brief History of the Internet”www.usg.edu. Retrieved August 7, 2020.
  65. ^ “Walking through the view of Delft – on Internet”Computers & Graphics25 (5): 927. October 2001. doi:10.1016/s0097-8493(01)00149-2ISSN 0097-8493.
  66. ^ DeNardis, L. (2007). “Chapter 24: A History of Internet Security”. In de Leeuw, K.M.M.; Bergstra, J. (eds.). The History of Information Security: A Comprehensive Handbook. Elsevier. pp. 681–704. ISBN 9780080550589.
  67. ^ Parrish, Allen; Impagliazzo, John; Raj, Rajendra K.; Santos, Henrique; Asghar, Muhammad Rizwan; Jøsang, Audun; Pereira, Teresa; Stavrou, Eliana (July 2, 2018). “Global perspectives on cybersecurity education for 2030: A case for a meta-discipline”Proceedings Companion of the 23rd Annual ACM Conference on Innovation and Technology in Computer Science Education. ACM. pp. 36–54. doi:10.1145/3293881.3295778hdl:1822/71620ISBN 978-1-4503-6223-8S2CID 58004425.
  68. ^ Perrin, Chad (June 30, 2008). “The CIA Triad”. Retrieved May 31, 2012.
  69. ^ Sandhu, Ravi; Jajodia, Sushil (October 20, 2000), “Relational Database Security”, Information Security Management Handbook, Four Volume Set, Auerbach Publications, doi:10.1201/9780203325438.ch120ISBN 978-0-8493-1068-3
  70. Jump up to:a b Stoneburner, G.; Hayden, C.; Feringa, A. (2004). “Engineering Principles for Information Technology Security” (PDF). csrc.nist.gov. doi:10.6028/NIST.SP.800-27rA. Archived from the original (PDF) on August 15, 2011. Retrieved August 28, 2011.
  71. ^ Beckers, K. (2015). Pattern and Security Requirements: Engineering-Based Establishment of Security Standards. Springer. p. 100. ISBN 9783319166643.
  72. ^ Fienberg, Stephen E.; Slavković, Aleksandra B. (2011), “Data Privacy and Confidentiality”, International Encyclopedia of Statistical Science, pp. 342–345, doi:10.1007/978-3-642-04898-2_202ISBN 978-3-642-04897-5
  73. Jump up to:a b c d e Andress, J. (2014). The Basics of Information Security: Understanding the Fundamentals of InfoSec in Theory and Practice. Syngress. p. 240. ISBN 9780128008126.
  74. ^ Boritz, J. Efrim (2005). “IS Practitioners’ Views on Core Concepts of Information Integrity”. International Journal of Accounting Information Systems6 (4). Elsevier: 260–279. doi:10.1016/j.accinf.2005.07.001.
  75. ^ Hryshko, I. (2020). “Unauthorized Occupation of Land and Unauthorized Construction: Concepts and Types of Tactical Means of Investigation”International Humanitarian University Herald. Jurisprudence (43): 180–184. doi:10.32841/2307-1745.2020.43.40ISSN 2307-1745.
  76. ^ Kim, Bonn-Oh (September 21, 2000), “Referential Integrity for Database Design”High-Performance Web Databases, Auerbach Publications, pp. 427–434, doi:10.1201/9781420031560-34ISBN 978-0-429-11600-1, retrieved May 29, 2021
  77. ^ Pevnev, V. (2018). “Model Threats and Ensure the Integrity of Information”Systems and Technologies2 (56): 80–95. doi:10.32836/2521-6643-2018.2-56.6ISSN 2521-6643.
  78. ^ Fan, Lejun; Wang, Yuanzhuo; Cheng, Xueqi; Li, Jinming; Jin, Shuyuan (February 26, 2013). “Privacy theft malware multi-process collaboration analysis”Security and Communication Networks8 (1): 51–67. doi:10.1002/sec.705ISSN 1939-0114.
  79. ^ “Completeness, Consistency, and Integrity of the Data Model”Measuring Data Quality for Ongoing Improvement. MK Series on Business Intelligence. Elsevier. 2013. pp. e11–e19. doi:10.1016/b978-0-12-397033-6.00030-4ISBN 978-0-12-397033-6. Retrieved May 29, 2021.
  80. ^ Video from SPIE – the International Society for Optics and Photonicsdoi:10.1117/12.2266326.5459349132001. Retrieved May 29, 2021.
  81. ^ “Communication Skills Used by Information Systems Graduates”Issues in Information Systems. 2005. doi:10.48009/1_iis_2005_311-317ISSN 1529-7314.
  82. ^ Outages of electric power supply resulting from cable failures Boston Edison Company system (Report). July 1, 1980. doi:10.2172/5083196OSTI 5083196. Retrieved January 18, 2022.
  83. ^ Loukas, G.; Oke, G. (September 2010) [August 2009]. “Protection Against Denial of Service Attacks: A Survey” (PDF)Comput. J. 53 (7): 1020–1037. doi:10.1093/comjnl/bxp078. Archived from the original (PDF) on March 24, 2012. Retrieved August 28, 2015.
  84. ^ “Be Able To Perform a Clinical Activity”Definitions, Qeios, February 2, 2020, doi:10.32388/dine5xS2CID 241238722, retrieved May 29, 2021
  85. ^ Ohta, Mai; Fujii, Takeo (May 2011). “Iterative cooperative sensing on shared primary spectrum for improving sensing ability”2011 IEEE International Symposium on Dynamic Spectrum Access Networks (DySPAN). IEEE. pp. 623–627. doi:10.1109/dyspan.2011.5936257ISBN 978-1-4577-0177-1S2CID 15119653.
  86. ^ Information technology. Information security incident management, BSI British Standards, doi:10.3403/30387743, retrieved May 29, 2021
  87. ^ Blum, Dan (2020), “Identify and Align Security-Related Roles”Rational Cybersecurity for Business, Berkeley, CA: Apress, pp. 31–60, doi:10.1007/978-1-4842-5952-8_2ISBN 978-1-4842-5951-1S2CID 226626983, retrieved May 29, 2021
  88. ^ McCarthy, C. (2006). “Digital Libraries: Security and Preservation Considerations”. In Bidgoli, H. (ed.). Handbook of Information Security, Threats, Vulnerabilities, Prevention, Detection, and Management. Vol. 3. John Wiley & Sons. pp. 49–76. ISBN 9780470051214.
  89. ^ Information technology. Open systems interconnection. Security frameworks for open systems, BSI British Standards, doi:10.3403/01110206u, retrieved May 29, 2021
  90. ^ Christofori, Ralf (January 1, 2014), “Thus could it have been”, Julio Rondo – O.k., Meta Memory, Wilhelm Fink Verlag, doi:10.30965/9783846757673_003 (inactive November 1, 2024), ISBN 978-3-7705-5767-7
  91. ^ Atkins, D. (May 2021). “Use of the Walnut Digital Signature Algorithm with CBOR Object Signing and Encryption (COSE)”RFC Editordoi:10.17487/rfc9021S2CID 182252627. Retrieved January 18, 2022.
  92. ^ Le May, I. (2003), “Structural Integrity in the Petrochemical Industry”Comprehensive Structural Integrity, Elsevier, pp. 125–149, doi:10.1016/b0-08-043749-4/01001-6ISBN 978-0-08-043749-1, retrieved May 29, 2021
  93. ^ “oecd.org” (PDF). Archived from the original (PDF) on May 16, 2011. Retrieved January 17, 2014.
  94. ^ “GSSP (Generally-Accepted system Security Principles): A trip to abilene”Computers & Security15 (5): 417. January 1996. doi:10.1016/0167-4048(96)82630-7ISSN 0167-4048.
  95. ^ Slade, Rob. “(ICS)2 Blog”. Archived from the original on November 17, 2017. Retrieved November 17, 2017.
  96. ^ Aceituno, Vicente. “Open Information Security Maturity Model”. Retrieved February 12, 2017.
  97. ^ Sodjahin, Amos; Champagne, Claudia; Coggins, Frank; Gillet, Roland (January 11, 2017). “Leading or lagging indicators of risk? The informational content of extra-financial performance scores”Journal of Asset Management18 (5): 347–370. doi:10.1057/s41260-016-0039-yISSN 1470-8272S2CID 157485290.
  98. ^ Reynolds, E H (July 22, 1995). “Folate has potential to cause harm”BMJ311 (6999): 257. doi:10.1136/bmj.311.6999.257ISSN 0959-8138PMC 2550299PMID 7503870.
  99. ^ Randall, Alan (2011), “Harm, risk, and threat”Risk and Precaution, Cambridge: Cambridge University Press, pp. 31–42, doi:10.1017/cbo9780511974557.003ISBN 978-0-511-97455-7, retrieved May 29, 2021
  100. ^ Grama, J.L. (2014). Legal Issues in Information Security. Jones & Bartlett Learning. p. 550. ISBN 9781284151046.
  101. ^ Cannon, David L. (March 4, 2016). “Audit Process”CISA: Certified Information Systems Auditor Study Guide (Fourth ed.). pp. 139–214. doi:10.1002/9781119419211.ch3ISBN 9781119056249.
  102. ^ CISA Review Manual 2006. Information Systems Audit and Control Association. 2006. p. 85. ISBN 978-1-933284-15-6.
  103. ^ Kadlec, Jaroslav (November 2, 2012). “Two-dimensional process modeling (2DPM)”Business Process Management Journal18 (6): 849–875. doi:10.1108/14637151211283320ISSN 1463-7154.
  104. ^ “All Countermeasures Have Some Value, But No Countermeasure Is Perfect”Beyond Fear, New York: Springer-Verlag, pp. 207–232, 2003, doi:10.1007/0-387-21712-6_14ISBN 0-387-02620-7, retrieved May 29, 2021
  105. ^ “Data breaches: Deloitte suffers serious hit while more details emerge about Equifax and Yahoo”Computer Fraud & Security2017 (10): 1–3. October 2017. doi:10.1016/s1361-3723(17)30086-6ISSN 1361-3723.
  106. ^ Spagnoletti, Paolo; Resca A. (2008). “The duality of Information Security Management: fighting against predictable and unpredictable threats”Journal of Information System Security4 (3): 46–62.
  107. ^ Yusoff, Nor Hashim; Yusof, Mohd Radzuan (August 4, 2009). “Managing HSE Risk in Harsh Environment”All Days. SPE. doi:10.2118/122545-ms.
  108. ^ Baxter, Wesley (2010). Sold out: how Ottawa’s downtown business improvement areas have secured and valorized urban space (Thesis). Carleton University. doi:10.22215/etd/2010-09016.
  109. ^ de Souza, André; Lynch, Anthony (June 2012). “Does Mutual Fund Performance Vary over the Business Cycle?”. Cambridge, MA. doi:10.3386/w18137S2CID 262620435.
  110. ^ Kiountouzis, E.A.; Kokolakis, S.A. (May 31, 1996). Information systems security: facing the information society of the 21st century. London: Chapman & Hall, Ltd. ISBN 978-0-412-78120-9.
  111. ^ Newsome, B. (2013). A Practical Introduction to Security and Risk Management. SAGE Publications. p. 208. ISBN 9781483324852.
  112. Jump up to:a b Whitman, M.E.; Mattord, H.J. (2016). Management of Information Security (5th ed.). Cengage Learning. p. 592. ISBN 9781305501256.
  113. ^ “Hardware, Fabrics, Adhesives, and Other Theatrical Supplies”Illustrated Theatre Production Guide, Routledge, pp. 203–232, March 20, 2013, doi:10.4324/9780080958392-20ISBN 978-0-08-095839-2, retrieved May 29, 2021
  114. ^ Reason, James (March 2, 2017), “Perceptions of Unsafe Acts”The Human Contribution, CRC Press, pp. 69–103, doi:10.1201/9781315239125-7ISBN 978-1-315-23912-5, retrieved May 29, 2021
  115. ^ “Information Security Procedures and Standards”Information Security Policies, Procedures, and Standards, Boca Raton, FL: Auerbach Publications, pp. 81–92, March 27, 2017, doi:10.1201/9781315372785-5ISBN 978-1-315-37278-5, retrieved May 29, 2021
  116. ^ Zhuang, Haifeng; Chen, Yu; Sheng, Xianfu; Hong, Lili; Gao, Ruilan; Zhuang, Xiaofen (June 25, 2020). “Figure S1: Analysis of the prognostic impact of each single signature gene”PeerJ8: e9437. doi:10.7717/peerj.9437/supp-1.
  117. ^ Standaert, B.; Ethgen, O.; Emerson, R.A. (June 2012). “CO4 Cost-Effectiveness Analysis – Appropriate for All Situations?”Value in Health15 (4): A2. doi:10.1016/j.jval.2012.03.015ISSN 1098-3015.
  118. ^ “GRP canopies provide cost-effective over-door protection”Reinforced Plastics40 (11): 8. November 1996. doi:10.1016/s0034-3617(96)91328-4ISSN 0034-3617.
  119. ^ “Figure 2.3. Relative risk of being a low performer depending on personal circumstances (2012)”doi:10.1787/888933171410. Retrieved May 29, 2021.
  120. ^ Stoneburner, Gary; Goguen, Alice; Feringa, Alexis (2002). “NIST SP 800-30 Risk Management Guide for Information Technology Systems”doi:10.6028/NIST.SP.800-30. Retrieved January 18, 2022.
  121. ^ “May I Choose? Can I Choose? Oppression and Choice”, A Theory of Freedom, Palgrave Macmillan, 2012, doi:10.1057/9781137295026.0007ISBN 978-1-137-29502-6
  122. ^ Parker, Donn B. (January 1994). “A Guide to Selecting and Implementing Security Controls”Information Systems Security3 (2): 75–86. doi:10.1080/10658989409342459ISSN 1065-898X.
  123. ^ Zoccali, Carmine; Mallamaci, Francesca; Tripepi, Giovanni (September 25, 2007). “Guest Editor: Rajiv Agarwal: Cardiovascular Risk Profile Assessment and Medication Control Should Come First”Seminars in Dialysis20 (5): 405–408. doi:10.1111/j.1525-139x.2007.00317.xISSN 0894-0959PMID 17897245S2CID 33256127.
  124. ^ Guide to the Implementation and Auditing of ISMS Controls based on ISO/IEC 27001. London: BSI British Standards. November 1, 2013. doi:10.3403/9780580829109ISBN 978-0-580-82910-9.
  125. ^ Johnson, L. (2015). Security Controls Evaluation, Testing, and Assessment Handbook. Syngress. p. 678. ISBN 9780128025642.
  126. ^ Information technology. Security techniques. Mapping the revised editions of ISO/IEC 27001 and ISO/IEC 27002, BSI British Standards, doi:10.3403/30310928, retrieved May 29, 2021
  127. ^ “Residents Must Protect Their Private Information”JAMA279 (17): 1410B. May 6, 1998. doi:10.1001/jama.279.17.1410ISSN 0098-7484.
  128. ^ “Group Wisdom Support Systems: Aggregating the Insights of Many Through Information Technology”Issues in Information Systems. 2008. doi:10.48009/2_iis_2008_343-350ISSN 1529-7314.
  129. ^ “INTERDEPENDENCIES OF INFORMATION SYSTEMS”Lessons Learned: Critical Information Infrastructure Protection, IT Governance Publishing, pp. 34–37, 2018, doi:10.2307/j.ctt1xhr7hq.13ISBN 978-1-84928-958-0, retrieved May 29, 2021
  130. ^ “Managing Network Security”Network Perimeter Security, Auerbach Publications, pp. 17–66, October 27, 2003, doi:10.1201/9780203508046-3ISBN 978-0-429-21157-7, retrieved May 29, 2021
  131. ^ Kakareka, A. (2013). “Chapter 31: What is Vulnerability Assessment?”. In Vacca, J.R. (ed.). Computer and Information Security Handbook (2nd ed.). Elsevier. pp. 541–552. ISBN 9780123946126.
  132. ^ “Administrative Controls”Occupational Ergonomics, CRC Press, pp. 443–666, March 26, 2003, doi:10.1201/9780203507933-6ISBN 978-0-429-21155-3, retrieved May 29, 2021
  133. ^ Duke, P. A.; Howard, I. P. (August 17, 2012). “Processing vertical size disparities in distinct depth planes”Journal of Vision12 (8): 10. doi:10.1167/12.8.10ISSN 1534-7362PMID 22904355.
  134. ^ “Security Onion Control Scripts”Applied Network Security Monitoring. Elsevier. 2014. pp. 451–456. doi:10.1016/b978-0-12-417208-1.09986-4ISBN 978-0-12-417208-1. Retrieved May 29, 2021.
  135. ^ Saia, Sergio; Fragasso, Mariagiovanna; Vita, Pasquale De; Beleggia, Romina. “Metabolomics Provides Valuable Insight for the Study of Durum Wheat: A Review”Journal of Agricultural and Food Chemistrydoi:10.1021/acs.jafc.8b07097.s001. Retrieved May 29, 2021.
  136. ^ “Overview”, Information Security Policies, Procedures, and Standards, Auerbach Publications, December 20, 2001, doi:10.1201/9780849390326.ch1ISBN 978-0-8493-1137-6
  137. ^ Electrical protection relays. Information and requirements for all protection relays, BSI British Standards, doi:10.3403/bs142-1, retrieved May 29, 2021
  138. ^ Dibattista, Joseph D.; Reimer, James D.; Stat, Michael; Masucci, Giovanni D.; Biondi, Piera; Brauwer, Maarten De; Bunce, Michael (February 6, 2019). “Supplemental Information 4: List of all combined families in alphabetical order assigned in MEGAN vers. 5.11.3”PeerJ7: e6379. doi:10.7717/peerj.6379/supp-4.
  139. ^ Kim, Sung-Won (March 31, 2006). “A Quantitative Analysis of Classification Classes and Classified Information Resources of Directory”Journal of Information Management37 (1): 83–103. doi:10.1633/jim.2006.37.1.083ISSN 0254-3621.
  140. Jump up to:a b Bayuk, J. (2009). “Chapter 4: Information Classification”. In Axelrod, C.W.; Bayuk, J.L.; Schutzer, D. (eds.). Enterprise Information Security and Privacy. Artech House. pp. 59–70. ISBN 9781596931916.
  141. ^ “Welcome to the Information Age”Overload!, Hoboken, NJ, US: John Wiley & Sons, Inc., pp. 43–65, September 11, 2015, doi:10.1002/9781119200642.ch5ISBN 978-1-119-20064-2, retrieved May 29, 2021
  142. ^ Crooks, S. (2006). “102. Case Study: When Exposure Control Efforts Override Other Important Design Considerations”AIHce 2006. AIHA. doi:10.3320/1.2759009 (inactive November 1, 2024).
  143. ^ “Business Model for Information Security (BMIS)”. ISACA. Archived from the original on January 26, 2018. Retrieved January 25, 2018.
  144. ^ McAuliffe, Leo (January 1987). “Top secret/trade secret: Accessing and safeguarding restricted information”Government Information Quarterly4 (1): 123–124. doi:10.1016/0740-624x(87)90068-2ISSN 0740-624X.
  145. ^ Iqbal, Javaid; Soroya, Saira Hanif; Mahmood, Khalid (January 5, 2023). “Financial information security behavior in online banking”Information Development40 (4): 550–565. doi:10.1177/02666669221149346ISSN 0266-6669S2CID 255742685.
  146. ^ Khairuddin, Ismail Mohd; Sidek, Shahrul Naim; Abdul Majeed, Anwar P.P.; Razman, Mohd Azraai Mohd; Puzi, Asmarani Ahmad; Yusof, Hazlina Md (February 25, 2021). “Figure 7: Classification accuracy for each model for all features”PeerJ Computer Science7: e379. doi:10.7717/peerj-cs.379/fig-7.
  147. ^ “Asset Classification”Information Security Fundamentals, Auerbach Publications, pp. 327–356, October 16, 2013, doi:10.1201/b15573-18ISBN 978-0-429-13028-1, retrieved June 1, 2021
  148. Jump up to:a b Almehmadi, Abdulaziz; El-Khatib, Khalil (2013). “Authorized! Access denied, unauthorized! Access granted”Proceedings of the 6th International Conference on Security of Information and Networks. Sin ’13. New York, New York, US: ACM Press. pp. 363–367. doi:10.1145/2523514.2523612ISBN 978-1-4503-2498-4S2CID 17260474.
  149. Jump up to:a b Peiss, Kathy (2020), “The Country of the Mind Must Also Attack”Information Hunters, Oxford University Press, pp. 16–39, doi:10.1093/oso/9780190944612.003.0003ISBN 978-0-19-094461-2, retrieved June 1, 2021
  150. ^ Fugini, M.G.; Martella, G. (January 1988). “A petri-net model of access control mechanisms”Information Systems13 (1): 53–63. doi:10.1016/0306-4379(88)90026-9ISSN 0306-4379.
  151. ^ Information technology. Personal identification. ISO-compliant driving licence, BSI British Standards, doi:10.3403/30170670u, retrieved June 1, 2021
  152. ^ Santos, Omar (2015). Ccna security 210-260 official cert guide. Cisco press. ISBN 978-1-58720-566-8OCLC 951897116.
  153. ^ “What is Assertion?”ASSERTION TRAINING, Abingdon, UK: Taylor & Francis, pp. 1–7, 1991, doi:10.4324/9780203169186_chapter_oneISBN 978-0-203-28556-5, retrieved June 1, 2021
  154. ^ Doe, John (1960). “Field Season In Illinois Begins May 2”Soil Horizons1 (2): 10. doi:10.2136/sh1960.2.0010 (inactive November 1, 2024). ISSN 2163-2812.
  155. ^ Leech, M. (March 1996). “Username/Password Authentication for SOCKS V5”doi:10.17487/rfc1929. Retrieved January 18, 2022.
  156. ^ Kirk, John; Wall, Christine (2011), “Teller, Seller, Union Activist: Class Formation and Changing Bank Worker Identities”Work and Identity, London: Palgrave Macmillan UK, pp. 124–148, doi:10.1057/9780230305625_6ISBN 978-1-349-36871-6, retrieved June 1, 2021
  157. ^ Dewi, Mila Nurmala (December 23, 2020). “Perbandingan Kinerja Teller Kriya Dan Teller Organik Pt. Bank Syariah Mandiri”Nisbah: Jurnal Perbankan Syariah6 (2): 75. doi:10.30997/jn.v6i2.1932ISSN 2528-6633S2CID 234420571.
  158. ^ Vile, John (2013), “License Checks”Encyclopedia of the Fourth Amendment, Washington DC: CQ Press, doi:10.4135/9781452234243.n462ISBN 978-1-60426-589-7, retrieved June 1, 2021
  159. ^ “He Said/She Said”My Ghost Has a Name, University of South Carolina Press, pp. 17–32, doi:10.2307/j.ctv6wgjjv.6ISBN 978-1-61117-827-2, retrieved May 29, 2021
  160. ^ Bacigalupo, Sonny A.; Dixon, Linda K.; Gubbins, Simon; Kucharski, Adam J.; Drewe, Julian A. (October 26, 2020). “Supplemental Information 8: Methods used to monitor different types of contact”PeerJ8: e10221. doi:10.7717/peerj.10221/supp-8.
  161. ^ Igelnik, Boris M.; Zurada, Jacek (2013). Efficiency and scalability methods for computational intellect. Information Science Reference. ISBN 978-1-4666-3942-3OCLC 833130899.
  162. ^ “The Insurance Superbill Must Have Your Name as the Provider”Before You See Your First Client, Routledge, pp. 37–38, January 1, 2005, doi:10.4324/9780203020289-11ISBN 978-0-203-02028-9, retrieved June 1, 2021
  163. ^ Kissell, Joe. Take Control of Your PasswordsISBN 978-1-4920-6638-5OCLC 1029606129.
  164. ^ “New smart Queensland driver license announced”Card Technology Today21 (7): 5. July 2009. doi:10.1016/s0965-2590(09)70126-4ISSN 0965-2590.
  165. ^ Lawrence Livermore National Laboratory. United States. Department of Energy. Office of Scientific and Technical Information (1995). A human engineering and ergonomic evaluation of the security access panel interface. United States. Dept. of Energy. OCLC 727181384.
  166. ^ Lee, Paul (April 2017). “Prints charming: how fingerprints are trailblazing mainstream biometrics”Biometric Technology Today2017 (4): 8–11. doi:10.1016/s0969-4765(17)30074-7ISSN 0969-4765.
  167. ^ Landrock, Peter (2005). “Two-Factor Authentication”. Encyclopedia of Cryptography and Security. p. 638. doi:10.1007/0-387-23483-7_443ISBN 978-0-387-23473-1.
  168. ^ “Figure 1.5. Marriage remains the most common form of partnership among couples, 2000-07”doi:10.1787/888932392533. Retrieved June 1, 2021.
  169. ^ Akpeninor, James Ohwofasa (2013). Modern Concepts of Security. Bloomington, IN: AuthorHouse. p. 135. ISBN 978-1-4817-8232-6. Retrieved January 18, 2018.
  170. ^ Richards, G. (April 2012). “One-Time Password (OTP) Pre-Authentication”doi:10.17487/rfc6560.
  171. ^ Schumacher, Dietmar (April 3, 2016). “Surface geochemical exploration after 85 years: What has been accomplished and what more must be done”International Conference and Exhibition, Barcelona, Spain, 3-6 April 2016. SEG Global Meeting Abstracts. Society of Exploration Geophysicists and American Association of Petroleum Geologists. p. 100. doi:10.1190/ice2016-6522983.1.
  172. ^ “Authorization And Approval Program”Internal Controls Policies and Procedures, Hoboken, NJ, US: John Wiley & Sons, Inc., pp. 69–72, October 23, 2015, doi:10.1002/9781119203964.ch10ISBN 978-1-119-20396-4, retrieved June 1, 2021
  173. ^ “What responses under what conditions?”Local Policies and the European Social Fund, Policy Press, pp. 81–102, October 2, 2019, doi:10.2307/j.ctvqc6hn1.12ISBN 978-1-4473-4652-4S2CID 241438707, retrieved June 1, 2021
  174. ^ Cheng, Liang; Zhang, Yang; Han, Zhihui (June 2013). “Quantitatively Measure Access Control Mechanisms across Different Operating Systems”2013 IEEE 7th International Conference on Software Security and Reliability. IEEE. pp. 50–59. doi:10.1109/sere.2013.12ISBN 978-1-4799-0406-8S2CID 13261344.
  175. Jump up to:a b Weik, Martin H. (2000), “discretionary access control”, Computer Science and Communications Dictionary, p. 426, doi:10.1007/1-4020-0613-6_5225ISBN 978-0-7923-8425-0
  176. ^ Grewer, C.; Balani, P.; Weidenfeller, C.; Bartusel, T.; Zhen Tao; Rauen, T. (August 10, 2005). “Individual Subunits of the Glutamate Transporter EAAC1 Homotrimer Function Independently of Each Other”Biochemistry44 (35): 11913–11923. doi:10.1021/bi050987nPMC 2459315PMID 16128593.
  177. ^ Ellis Ormrod, Jeanne (2012). Essentials of educational psychology: big ideas to guide effective teaching. Pearson. ISBN 978-0-13-136727-2OCLC 663953375.
  178. ^ Belim, S. V.; Bogachenko, N. F.; Kabanov, A. N. (November 2018). “Severity Level of Permissions in Role-Based Access Control”2018 Dynamics of Systems, Mechanisms and Machines (Dynamics). IEEE. pp. 1–5. arXiv:1812.11404doi:10.1109/dynamics.2018.8601460ISBN 978-1-5386-5941-0S2CID 57189531.
  179. ^ “Configuring TACACS and Extended TACACS”, Securing and Controlling Cisco Routers, Auerbach Publications, May 15, 2002, doi:10.1201/9781420031454.ch11ISBN 978-0-8493-1290-8
  180. ^ “Developing Effective Security Policies”Risk Analysis and Security Countermeasure Selection, CRC Press, pp. 261–274, December 18, 2009, doi:10.1201/9781420078718-18ISBN 978-0-429-24979-2, retrieved June 1, 2021
  181. ^ “The Use of Audit Trails to Monitor Key Networks and Systems Should Remain Part of the Computer Security Material Weakness”www.treasury.gov. Retrieved October 6, 2017.
  182. ^ “fixing-canadas-access-to-medicines-regime-what-you-need-to-know-about-bill-c398”Human Rights Documents onlinedoi:10.1163/2210-7975_hrd-9902-0152. Retrieved June 1, 2021.
  183. ^ Salazar, Mary K. (January 2006). “Dealing with Uncertain Risks—When to Apply the Precautionary Principle”AAOHN Journal54 (1): 11–13. doi:10.1177/216507990605400102ISSN 0891-0162S2CID 87769508.
  184. ^ “We Need to Know More About How the Government Censors Its Employees”Human Rights Documents Onlinedoi:10.1163/2210-7975_hrd-9970-2016117. Retrieved June 1, 2021.
  185. ^ Pournelle, Jerry (April 22, 2004), “1001 Computer Words You Need to Know”1001 Computer Words You Need to Know: The Ultimate Guide To The Language Of Computers, Oxford Scholarship Online, Oxford University Press, doi:10.1093/oso/9780195167757.003.0007ISBN 978-0-19-516775-7, retrieved July 30, 2021
  186. ^ Easttom, William (2021), “Elliptic Curve Cryptography”Modern Cryptography, Cham: Springer International Publishing, pp. 245–256, doi:10.1007/978-3-030-63115-4_11ISBN 978-3-030-63114-7S2CID 234106555, retrieved June 1, 2021
  187. ^ Follman, Rebecca (March 1, 2014). From Someone Who Has Been There: Information Seeking in MentoringIConference 2014 Proceedings (Thesis). iSchools. doi:10.9776/14322hdl:1903/14292ISBN 978-0-9884900-1-7.
  188. ^ Weiss, Jason (2004), “Message Digests, Message Authentication Codes, and Digital Signatures”Java Cryptography Extensions, Elsevier, pp. 101–118, doi:10.1016/b978-012742751-5/50012-8ISBN 978-0-12-742751-5, retrieved June 5, 2021
  189. ^ Bider, D. (March 2018). “Use of RSA Keys with SHA-256 and SHA-512 in the Secure Shell (SSH) Protocol” (PDF). The RFC Series. doi:10.17487/RFC8332. Retrieved November 30, 2023.
  190. ^ Noh, Jaewon; Kim, Jeehyeong; Kwon, Giwon; Cho, Sunghyun (October 2016). “Secure key exchange scheme for WPA/WPA2-PSK using public key cryptography”2016 IEEE International Conference on Consumer Electronics-Asia (ICCE-Asia). IEEE. pp. 1–4. doi:10.1109/icce-asia.2016.7804782ISBN 978-1-5090-2743-9S2CID 10595698.
  191. ^ Van Buren, Roy F. (May 1990). “How you can use the data encryption standard to encrypt your files and data bases”ACM SIGSAC Review8 (2): 33–39. doi:10.1145/101126.101130ISSN 0277-920X.
  192. ^ Bonneau, Joseph (2016), “Why Buy when You Can Rent?”Financial Cryptography and Data Security, Lecture Notes in Computer Science, vol. 9604, Berlin, Heidelberg: Springer Berlin Heidelberg, pp. 19–26, doi:10.1007/978-3-662-53357-4_2ISBN 978-3-662-53356-7S2CID 18122687, retrieved June 5, 2021
  193. ^ Coleman, Heather; Andron, Jeff (August 1, 2015), “What GIS Experts and Policy Professionals Need to Know about Using Marxan in Multiobjective Planning Processes”Ocean Solutions, Earth Solutions, Esri Press, doi:10.17128/9781589483651_2ISBN 978-1-58948-365-1, retrieved June 5, 2021
  194. Jump up to:a b Landrock, Peter (2005), “Key Encryption Key”, Encyclopedia of Cryptography and Security, pp. 326–327, doi:10.1007/0-387-23483-7_220ISBN 978-0-387-23473-1
  195. ^ Giri, Debasis; Barua, Prithayan; Srivastava, P. D.; Jana, Biswapati (2010), “A Cryptosystem for Encryption and Decryption of Long Confidential Messages”, Information Security and Assurance, Communications in Computer and Information Science, vol. 76, Berlin, Heidelberg: Springer Berlin Heidelberg, pp. 86–96, Bibcode:2010isa..conf…86Gdoi:10.1007/978-3-642-13365-7_9ISBN 978-3-642-13364-0, retrieved June 5, 2021
  196. ^ Vallabhaneni, S.R. (2008). Corporate Management, Governance, and Ethics Best Practices. John Wiley & Sons. p. 288. ISBN 9780470255803.
  197. ^ Shon Harris (2003). All-in-one CISSP Certification Exam Guide (2nd ed.). Emeryville, CaliforniaMcGraw-Hill/Osborne. ISBN 978-0-07-222966-0.
  198. ^ Boncardo, Robert (September 20, 2018). “Jean-Claude Milner’s Mallarmé: Nothing Has Taken Place”Edinburgh University Press1doi:10.3366/edinburgh/9781474429528.003.0005S2CID 172045429.
  199. ^ “The Importance of Operational Due Diligence”Hedge Fund Operational Due Diligence, Hoboken, NJ, US: John Wiley & Sons, Inc., pp. 49–67, October 16, 2015, doi:10.1002/9781119197485.ch2ISBN 978-1-119-19748-5, retrieved June 5, 2021
  200. ^ Hall, Gaylord C. (March 1917). “Some Important Diagnostic Points the General Practioner [sic] Should Know About the Nose”Southern Medical Journal10 (3): 211. doi:10.1097/00007611-191703000-00007ISSN 0038-4348.
  201. ^ Renes, J. (1999). Landschappen van Maas en Peel: een toegepast historisch-geografisch onderzoek in het streekplangebied Noord- en Midden-Limburg. Eisma. ISBN 90-74252-84-2OCLC 782897414.
  202. ^ Thomas, Brook (June 22, 2017). “Minding Previous Steps Taken”Oxford Scholarship Onlinedoi:10.1093/acprof:oso/9780190456368.003.0002ISBN 978-0-19-045639-9.
  203. ^ Lundgren, Regina E. (2018). Risk communication : a handbook for communicating environmental, safety, and health risks. Wiley. ISBN 978-1-119-45613-1OCLC 1043389392.
  204. ^ Jensen, Eric Talbot (December 3, 2020), “Due Diligence in Cyber Activities”Due Diligence in the International Legal Order, Oxford University Press, pp. 252–270, doi:10.1093/oso/9780198869900.003.0015ISBN 978-0-19-886990-0, retrieved June 5, 2021
  205. ^ “The Duty of Care Risk Analysis Standard”DoCRA. Archived from the original on August 14, 2018. Retrieved August 15, 2018.
  206. ^ Sutton, Adam; Cherney, Adrian; White, Rob (2008), “Evaluating crime prevention”Crime Prevention, Cambridge: Cambridge University Press, pp. 70–90, doi:10.1017/cbo9780511804601.006ISBN 978-0-511-80460-1, retrieved June 5, 2021
  207. ^ Check, Erika (September 15, 2004). “FDA considers antidepressant risks for kids”Naturedoi:10.1038/news040913-15ISSN 0028-0836.
  208. ^ Auckland, Cressida (August 16, 2017). “Protecting me from my Directive: Ensuring Appropriate Safeguards for Advance Directives in Dementia”Medical Law Review26 (1): 73–97. doi:10.1093/medlaw/fwx037ISSN 0967-0742PMID 28981694.
  209. ^ Takach, George S. (2016), “Preparing for Breach Litigation”Data Breach Preparation and Response, Elsevier, pp. 217–230, doi:10.1016/b978-0-12-803451-4.00009-5ISBN 978-0-12-803451-4, retrieved June 5, 2021
  210. ^ “ISO 17799|ISO/IEC 17799:2005(E)”Information technology – Security techniques – Code of practice for information security management. ISO copyright office. June 15, 2005. pp. 90–94.
  211. ^ Fowler, Kevvie (2016), “Developing a Computer Security Incident Response Plan”Data Breach Preparation and Response, Elsevier, pp. 49–77, doi:10.1016/b978-0-12-803451-4.00003-4ISBN 978-0-12-803451-4
  212. ^ Johnson, Leighton R. (2014), “Part 1. Incident Response Team”Computer Incident Response and Forensics Team Management, Elsevier, pp. 17–19, doi:10.1016/b978-1-59749-996-5.00038-8ISBN 978-1-59749-996-5, retrieved June 5, 2021
  213. ^ Kampfner, Roberto R. (1985). “Formal specification of information systems requirements”Information Processing & Management21 (5): 401–414. doi:10.1016/0306-4573(85)90086-xISSN 0306-4573.
  214. ^ Jenner, H.A. (1995). Assessment of ecotoxicological risks of element leaching from pulverized coal ashes. s.n.] OCLC 905474381.
  215. ^ “Desktop Computers: Software”Practical Pathology Informatics. New York: Springer-Verlag. 2006. pp. 51–82. doi:10.1007/0-387-28058-8_3ISBN 0-387-28057-X. Retrieved June 5, 2021.
  216. ^ Wilby, R.L.; Orr, H.G.; Hedger, M.; Forrow, D.; Blackmore, M. (December 2006). “Risks posed by climate change to the delivery of Water Framework Directive objectives in the UK”Environment International32 (8): 1043–1055. Bibcode:2006EnInt..32.1043Wdoi:10.1016/j.envint.2006.06.017ISSN 0160-4120PMID 16857260.
  217. ^ Campbell, T. (2016). “Chapter 14: Secure Systems Development”Practical Information Security Management: A Complete Guide to Planning and Implementation. Apress. p. 218. ISBN 9781484216859.
  218. ^ Koppelman, Kent L. (2011). Understanding human differences : multicultural education for a diverse America. Pearson/Allyn & Bacon. OCLC 1245910610.
  219. ^ “Post-processing”Simple Scene, Sensational Shot. Routledge. April 12, 2013. pp. 128–147. doi:10.4324/9780240821351-9ISBN 978-0-240-82135-1. Retrieved June 5, 2021.
  220. ^ Kumar, Binay; Mahto, Tulsi; Kumari, Vinita; Ravi, Binod Kumar; Deepmala (2016). “Quackery: How It Can Prove Fatal Even in Apparently Simple Cases-A Case Report”Medico-Legal Update16 (2): 75. doi:10.5958/0974-1283.2016.00063.3ISSN 0971-720X.
  221. ^ Priest, Sally (February 22, 2019). “Shared roles and responsibilities in flood risk management”Journal of Flood Risk Management12 (1): e12528. Bibcode:2019JFRM…12E2528Pdoi:10.1111/jfr3.12528ISSN 1753-318XS2CID 133789858.
  222. ^ United States. Department of Energy. Office of Inspector General. Office of Scientific and Technical Information (2009). Audit Report, “Fire Protection Deficiencies at Los Alamos National Laboratory.”. United States. Dept. of Energy. OCLC 727225166.
  223. ^ Toms, Elaine G. (January 1992). “Managing change in libraries and information services; A systems approach”Information Processing & Management28 (2): 281–282. doi:10.1016/0306-4573(92)90052-2ISSN 0306-4573.
  224. ^ Abolhassan, Ferri (2003). “The Change Management Process Implemented at IDS Scheer”Business Process Change Management. Berlin, Heidelberg: Springer Berlin Heidelberg. pp. 15–22. doi:10.1007/978-3-540-24703-6_2ISBN 978-3-642-05532-4. Retrieved June 5, 2021.
  225. ^ Dawson, Chris (July 1, 2020). Leading Culture Changedoi:10.1515/9780804774673ISBN 9780804774673S2CID 242348822.
  226. ^ McCormick, Douglas P. (March 22, 2016). Family Inc. : using business principles to maximize your family’s wealth. John Wiley & Sons. ISBN 978-1-119-21976-7OCLC 945632737.
  227. ^ Schuler, Rainer (August 1995). “Some properties of sets tractable under every polynomial-time computable distribution”Information Processing Letters55 (4): 179–184. doi:10.1016/0020-0190(95)00108-oISSN 0020-0190.
  228. ^ “Figure 12.2. Share of own-account workers who generally do not have more than one client” (Excel)doi:10.1787/888933881610. Retrieved June 5, 2021.
  229. ^ “Multi-user file server for DOS LANs”Computer Communications10 (3): 153. June 1987. doi:10.1016/0140-3664(87)90353-7ISSN 0140-3664.
  230. ^ “Defining Organizational Change”Organizational Change, Oxford, UK: Wiley-Blackwell, pp. 21–51, April 19, 2011, doi:10.1002/9781444340372.ch1ISBN 978-1-4443-4037-2, retrieved June 5, 2021
  231. ^ Kirchmer, Mathias; Scheer, August-Wilhelm (2003), “Change Management — Key for Business Process Excellence”Business Process Change Management, Berlin, Heidelberg: Springer Berlin Heidelberg, pp. 1–14, doi:10.1007/978-3-540-24703-6_1ISBN 978-3-642-05532-4, retrieved June 5, 2021
  232. ^ More, Josh; Stieber, Anthony J.; Liu, Chris (2016), “Tier 2—Advanced Help Desk—Help Desk Supervisor”Breaking Into Information Security, Elsevier, pp. 111–113, doi:10.1016/b978-0-12-800783-9.00029-xISBN 978-0-12-800783-9, retrieved June 5, 2021
  233. ^ “An Application of Bayesian Networks in Automated Scoring of Computerized Simulation Tasks”Automated Scoring of Complex Tasks in Computer-Based Testing, Routledge, pp. 212–264, April 4, 2006, doi:10.4324/9780415963572-10ISBN 978-0-415-96357-2, retrieved June 5, 2021
  234. ^ Kavanagh, Michael J. (June 1994). “Change, Change, Change”Group & Organization Management19 (2): 139–140. doi:10.1177/1059601194192001ISSN 1059-6011S2CID 144169263.
  235. ^ Taylor, J. (2008). “Chapter 10: Understanding the Project Change Process”. Project Scheduling and Cost Control: Planning, Monitoring and Controlling the Baseline. J. Ross Publishing. pp. 187–214. ISBN 9781932159110.
  236. ^ “17. Innovation and Change: Can Anyone Do This?”Backstage in a Bureaucracy, University of Hawaii Press, pp. 87–96, December 31, 2017, doi:10.1515/9780824860936-019ISBN 978-0-8248-6093-6, retrieved June 5, 2021
  237. ^ Braun, Adam (February 3, 2015). Promise of a pencil : how an ordinary person can create extraordinary change. Simon and Schuster. ISBN 978-1-4767-3063-9OCLC 902912775.
  238. ^ “Describing Within-Person Change Over Time”Longitudinal Analysis, Routledge, pp. 235–306, January 30, 2015, doi:10.4324/9781315744094-14ISBN 978-1-315-74409-4, retrieved June 5, 2021
  239. ^ Ingraham, Carolyn; Ban, Patricia W. (1984). Legislating bureaucratic change : the Civil Service Reform Act of 1978. State University of New York Press. ISBN 0-87395-886-1OCLC 10300171.
  240. ^ Wei, J. (May 4, 2000). “Preliminary Change Request for the SNS 1.3 GeV-Compatible Ring”OSTI.GOVdoi:10.2172/1157253OSTI 1157253. Retrieved January 18, 2022.
  241. ^ Chen Liang (May 2011). “Allocation priority management of agricultural water resources based on the theory of virtual water”2011 International Conference on Business Management and Electronic Information. Vol. 1. IEEE. pp. 644–647. doi:10.1109/icbmei.2011.5917018ISBN 978-1-61284-108-3S2CID 29137725.
  242. ^ “Change risks and best practices in Business Change Management Unmanaged change risk leads to problems for change management”, Leading and Implementing Business Change Management, Routledge, pp. 32–74, July 18, 2013, doi:10.4324/9780203073957-9 (inactive November 1, 2024), ISBN 978-0-203-07395-7
  243. ^ Bragg, Steven M. (2016). Accounting Best Practices. Wiley. ISBN 978-1-118-41780-5OCLC 946625204.
  244. ^ “Successful change requires more than change management”Human Resource Management International Digest16 (7). October 17, 2008. doi:10.1108/hrmid.2008.04416gad.005ISSN 0967-0734.
  245. ^ “Planning for water resources under climate change”Spatial Planning and Climate Change, Routledge, pp. 287–313, September 13, 2010, doi:10.4324/9780203846537-20ISBN 978-0-203-84653-7, retrieved June 5, 2021
  246. ^ Rowan, John (January 1967). “Answering the computer back”Management Decision1 (1): 51–54. doi:10.1108/eb000776ISSN 0025-1747.
  247. ^ Biswas, Margaret R.; Biswas, Asit K. (February 1981). “Climatic change and food production”Agriculture and Environment5 (4): 332. doi:10.1016/0304-1131(81)90050-3ISSN 0304-1131.
  248. ^ Weik, Martin H. (2000), “backout”, Computer Science and Communications Dictionary, p. 96, doi:10.1007/1-4020-0613-6_1259ISBN 978-0-7923-8425-0
  249. ^ “Editorial Advisory and Review Board”Business and Sustainability: Concepts, Strategies and Changes, Critical Studies on Corporate Responsibility, Governance and Sustainability, vol. 3, Emerald Group Publishing Limited, pp. xv–xvii, December 6, 2011, doi:10.1108/s2043-9059(2011)0000003005ISBN 978-1-78052-438-2, retrieved June 5, 2021
  250. ^ “Where a Mirage Has Once Been, Life Must Be”New and Selected Poems, University of South Carolina Press, p. 103, 2014, doi:10.2307/j.ctv6sj8d1.65ISBN 978-1-61117-323-9, retrieved June 5, 2021
  251. ^ Bell, Marvin (1983). “Two, When There Might Have Been Three”. The Antioch Review41 (2): 209. doi:10.2307/4611230JSTOR 4611230.
  252. ^ “We can also make change”Human Rights Documents Onlinedoi:10.1163/2210-7975_hrd-0148-2015175. Retrieved June 5, 2021.
  253. ^ Mazikana, Anthony Tapiwa (November 5, 2020). “‘Change Is the Law of Life. and Those Who Look only to the past or Present Are Certain to Miss the Future- John F. Kennedy’ Assessing This Statement with References to Organizations in Zimbabwe Who Have Been Affected by Change”. SSRN 3725707.
  254. ^ Ramanadham, V. V. (ed.). Privatisation in the UKISBN 978-0-429-19973-8OCLC 1085890184.
  255. ^ “More complex/realistic rheology must be implemented; Numerical convergence tests must be performed”Geoloscientific Model Development Discussions. September 22, 2020. doi:10.5194/gmd-2020-107-rc2S2CID 241597573.
  256. ^ Stone, Edward. Edward C. Stone CollectionOCLC 733102101.
  257. ^ Lientz, B (2002). “Develop Your Improvement Implementation Plan”Achieve Lasting Process Improvement. Elsevier. pp. 151–171. doi:10.1016/b978-0-12-449984-3.50011-8ISBN 978-0-12-449984-3. Retrieved June 5, 2021.
  258. ^ Smeets, Peter (2009). Expeditie agroparken : ontwerpend onderzoek naar metropolitane landbouw en duurzame ontwikkeling. s.n.] ISBN 978-90-8585-515-6OCLC 441821141.
  259. ^ “Figure 1.3. About 50 percent of the Going for Growth recommendations have been implemented or are in process of implementation”doi:10.1787/888933323735. Retrieved June 5, 2021.
  260. ^ Kekes, John (February 21, 2019), “Must Justice Be Done at All Costs?”Hard Questions, Oxford University Press, pp. 98–126, doi:10.1093/oso/9780190919986.003.0005ISBN 978-0-19-091998-6, retrieved June 5, 2021
  261. ^ Forrester, Kellie (2014). Macroeconomic implications of changes in the composition of the labor force. University of California, Santa Barbara. ISBN 978-1-321-34938-2OCLC 974418780.
  262. ^ Choudhury, Gagan L.; Rappaport, Stephen S. (October 1981). “Demand assigned multiple access systems using collision type request channels”ACM SIGCOMM Computer Communication Review11 (4): 136–148. doi:10.1145/1013879.802667ISSN 0146-4833.
  263. ^ Crinson, Mark (2013). “”Certain Old and Lovely Things, Whose Signified Is Abstract, Out of Date”: James Stirling and Nostalgia”Change over Time3 (1): 116–135. doi:10.1353/cot.2013.0000ISSN 2153-0548S2CID 144451363.
  264. ^ Ahwidy, Mansour; Pemberton, Lyn (2016). “What Changes Need to be Made within the LNHS for Ehealth Systems to be Successfully Implemented?”Proceedings of the International Conference on Information and Communication Technologies for Ageing Well and e-Health. Scitepress. pp. 71–79. doi:10.5220/0005620400710079ISBN 978-989-758-180-9.
  265. ^ Mortimer, John (April 2010). Paradise postponed. Penguin Adult. ISBN 978-0-14-104952-6OCLC 495596392.
  266. Jump up to:a b Cobey, Sarah; Larremore, Daniel B.; Grad, Yonatan H.; Lipsitch, Marc (2021). “Concerns about SARS-CoV-2 evolution should not hold back efforts to expand vaccination”Nature Reviews Immunology21 (5): 330–335. doi:10.1038/s41577-021-00544-9PMC 8014893PMID 33795856.
  267. ^ Frampton, Michael (December 26, 2014), “Processing Data with Map Reduce”Big Data Made Easy, Berkeley, CA: Apress, pp. 85–120, doi:10.1007/978-1-4842-0094-0_4ISBN 978-1-4842-0095-7, retrieved June 5, 2021
  268. ^ “Good study overall, but several procedures need fixing” (PDF)Hydrology and Earth System Sciences Discussions. February 23, 2016. doi:10.5194/hess-2015-520-rc2. Retrieved January 18, 2022.
  269. ^ Harrison, Kent; Craft, Walter M.; Hiller, Jack; McCluskey, Michael R.; BDM Federal Inc Seaside CA (July 1996). “Peer Review Coordinating Draft. Task Analysis for Conduct Intelligence Planning (Critical Combat Function 1): As Accomplished by a Battalion Task Force”DTIC ADA313949.
  270. ^ itpi.org Archived December 10, 2013, at the Wayback Machine
  271. ^ “book summary of The Visible Ops Handbook: Implementing ITIL in 4 Practical and Auditable Steps”. wikisummaries.org. Retrieved June 22, 2016.
  272. ^ Bigelow, Michelle (September 23, 2020), “Change Control and Change Management”Implementing Information Security in Healthcare, HIMSS Publishing, pp. 203–214, doi:10.4324/9781003126294-17ISBN 978-1-003-12629-4S2CID 224866307, retrieved June 5, 2021
  273. ^ Business continuity management. Guidance on organization recovery following disruptive incidents, BSI British Standards, doi:10.3403/30194308, retrieved June 5, 2021
  274. ^ Hoanh, Chu Thai (1996). Development of a computerized aid to integrated land use planning (cailup) at regional level in irrigated areas : a case study for the Quan Lo Phung Hiep region in the Mekong Delta, Vietnam. ITC. ISBN 90-6164-120-9OCLC 906763535.
  275. ^ 1Hibberd, Gary (September 11, 2015), “Developing a BCM Strategy in Line with Business Strategy”The Definitive Handbook of Business Continuity Management, Hoboken, NJ, US: John Wiley & Sons, Inc., pp. 23–30, doi:10.1002/9781119205883.ch2ISBN 978-1-119-20588-3, retrieved June 5, 2021
  276. ^ Hotchkiss, Stuart (2010). Business Continuity Management: In Practice. BCS Learning & Development Limited. ISBN 978-1-906124-72-4.[page needed]
  277. ^ “Identifying Potential Failure Causes”Systems Failure Analysis, ASM International, pp. 25–33, 2009, doi:10.31399/asm.tb.sfa.t52780025ISBN 978-1-62708-268-6, retrieved June 5, 2021
  278. ^ Clemens, Jeffrey. Risks to the returns to medical innovation : the case of myriad geneticsOCLC 919958196.
  279. ^ Goatcher, Genevieve (2013), “Maximum Acceptable Outage”Encyclopedia of Crisis Management, Thousand Oaks, CA: SAGE Publications, Inc., doi:10.4135/9781452275956.n204ISBN 978-1-4522-2612-5, retrieved June 5, 2021
  280. ^ “Segment Design Tradeoffs”Software Radio Architecture, New York, US: John Wiley & Sons, Inc., pp. 236–243, January 17, 2002, doi:10.1002/047121664x.ch6ISBN 978-0-471-21664-3, retrieved June 5, 2021
  281. ^ Blundell, S. (1998). “IN-EMERGENCY – integrated incident management, emergency healthcare and environmental monitoring in road networks”IEE Seminar Using ITS in Public Transport and in Emergency Services. Vol. 1998. IEE. p. 9. doi:10.1049/ic:19981090.
  282. ^ King, Jonathan R. (January 1993). “Contingency Plans and Business Recovery”Information Systems Management10 (4): 56–59. doi:10.1080/10580539308906959ISSN 1058-0530.
  283. ^ Phillips, Brenda D.; Landahl, Mark (2021), “Strengthening and testing your business continuity plan”Business Continuity Planning, Elsevier, pp. 131–153, doi:10.1016/b978-0-12-813844-1.00001-4ISBN 978-0-12-813844-1S2CID 230582246, retrieved June 5, 2021
  284. ^ Schnurr, Stephanie (2009), “The ‘Other’ Side of Leadership Discourse: Humour and the Performance of Relational Leadership Activities”Leadership Discourse at Work, London: Palgrave Macmillan UK, pp. 42–60, doi:10.1057/9780230594692_3ISBN 978-1-349-30001-3, retrieved June 5, 2021
  285. ^ Specified time relays for industrial use, BSI British Standards, doi:10.3403/02011580u, retrieved June 5, 2021
  286. ^ “Sample Generic Plan and Procedure: Disaster Recovery Plan (DRP) for Operations/Data Center”Workplace Violence. Elsevier. 2010. pp. 253–270. doi:10.1016/b978-1-85617-698-9.00025-4ISBN 978-1-85617-698-9. Retrieved June 5, 2021.
  287. ^ “Information Technology Disaster Recovery Plan”Disaster Planning for Libraries. Chandos Information Professional Series. Elsevier. 2015. pp. 187–197. doi:10.1016/b978-1-84334-730-9.00019-3ISBN 978-1-84334-730-9. Retrieved June 5, 2021.
  288. ^ “The Disaster Recovery Plan”. Sans Institute. Retrieved February 7, 2012.
  289. Jump up to:a b OECD (2016). “Figure 1.10. Regulations in non-manufacturing sector have significant impact on the manufacturing sector”Economic Policy Reforms 2016: Going for Growth Interim Report. Economic Policy Reforms. Paris: OECD Publishing. doi:10.1787/growth-2016-enISBN 9789264250079. Retrieved June 5, 2021.
  290. ^ Ahupuaʻa [electronic resource] : World Environmental and Water Resources Congress 2008, May 12-16, 2008, Honolulu, Hawaiʻi. American Society of Civil Engineers. 2008. ISBN 978-0-7844-0976-3OCLC 233033926.
  291. ^ Great Britain. Parliament. House of Commons (2007). Data protection [H.L.] A bill [as amended in standing committee d] intituled an act to make new provision for the regulation of the processing of information relating to individuals, including the obtaining, holding, use or disclosure of such information. Proquest LLC. OCLC 877574826.
  292. ^ “Data protection, access to personal information and privacy protection”Government and Information Rights: The Law Relating to Access, Disclosure and their Regulation, Bloomsbury Professional, 2019, doi:10.5040/9781784518998.chapter-002ISBN 978-1-78451-896-7S2CID 239376648, retrieved June 5, 2021
  293. ^ Lehtonen, Lasse A. (July 5, 2017). “Genetic Information and the Data Protection Directive of the European Union”The Data Protection Directive and Medical Research Across Europe. Routledge. pp. 103–112. doi:10.4324/9781315240350-8ISBN 978-1-315-24035-0. Retrieved June 5, 2021.
  294. ^ “Data Protection Act 1998”legislation.gov.uk. The National Archives. Retrieved January 25, 2018.
  295. ^ “Computer Misuse Act 1990”Criminal Law Statutes 2011-2012. Routledge. June 17, 2013. pp. 114–118. doi:10.4324/9780203722763-42ISBN 978-0-203-72276-3. Retrieved June 5, 2021.
  296. ^ Dharmapala, Dhammika; Hines, James (December 2006). “Which Countries Become Tax Havens?”. Working Paper Series. Cambridge, MA. doi:10.3386/w12802.
  297. ^ “Figure 1.14. Participation rates have risen but labour force growth has slowed in several countries”doi:10.1787/888933367391. Retrieved June 5, 2021.
  298. ^ “Computer Misuse Act 1990”legislation.gov.uk. The National Archives. Retrieved January 25, 2018.
  299. ^ “Directive 2006/24/EC of the European Parliament and of the Council of 15 March 2006”EUR-Lex. European Union. March 15, 2006. Retrieved January 25, 2018.
  300. ^ “Defamation, Student Records, and the Federal Family Education Rights and Privacy Act”Higher Education Law. Routledge. December 14, 2010. pp. 361–394. doi:10.4324/9780203846940-22ISBN 978-0-203-84694-0. Retrieved June 5, 2021.
  301. Jump up to:a b “Alabama Schools Receive NCLB Grant To Improve Student Achievement”PsycEXTRA Dataset. 2004. doi:10.1037/e486682006-001. Retrieved June 5, 2021.
  302. ^ Turner-Gottschang, Karen (1987). China bound : a guide to academic life and work in the PRC : for the Committee on Scholarly Communication with the People’s Republic of China, National Academy of Sciences, American Council of Learned Societies, Social Science Research Council. National Academy Press. ISBN 0-309-56739-4OCLC 326709779.
  303. ^ Codified at 20 U.S.C. § 1232g, with implementing regulations in title 34, part 99 of the Code of Federal Regulations
  304. ^ “Audit Booklet”Information Technology Examination Handbook. FFIEC. Retrieved January 25, 2018.
  305. ^ Ray, Amy W. (2004). “Health Insurance Portability and Accountability Act (HIPAA)”Encyclopedia of Health Care Management. Thousand Oaks, CA: SAGE Publications, Inc. doi:10.4135/9781412950602.n369ISBN 978-0-7619-2674-0. Retrieved June 5, 2021.
  306. ^ “Public Law 104 – 191 – Health Insurance Portability and Accountability Act of 1996”. U.S. Government Publishing Office. Retrieved January 25, 2018.
  307. ^ “Public Law 106 – 102 – Gramm–Leach–Bliley Act of 1999” (PDF). U.S. Government Publishing Office. Retrieved January 25, 2018.
  308. ^ Alase, Abayomi Oluwatosin (2016). The impact of the Sarbanes-Oxley Act (SOX) on small-sized publicly traded companies and their communities (Thesis). Northeastern University Library. doi:10.17760/d20204801.
  309. ^ Solis, Lupita (2019). Educational and Professional Trends of Chief Financial Officers (Thesis). Portland State University Library. doi:10.15760/honors.763.
  310. ^ “Public Law 107 – 204 – Sarbanes-Oxley Act of 2002”. U.S. Government Publishing Office. Retrieved January 25, 2018.
  311. ^ “Pci Dss Glossary, Abbreviations, and Acronyms”Payment Card Industry Data Security Standard Handbook, Hoboken, NJ, US: John Wiley & Sons, Inc., pp. 185–199, September 18, 2015, doi:10.1002/9781119197218.glossISBN 978-1-119-19721-8, retrieved June 5, 2021
  312. ^ “PCI Breakdown (Control Objectives and Associated Standards)”Payment Card Industry Data Security Standard Handbook, Hoboken, NJ, US: John Wiley & Sons, Inc., p. 61, September 18, 2015, doi:10.1002/9781119197218.part2ISBN 978-1-119-19721-8, retrieved June 5, 2021
  313. ^ Ravallion, Martin; Chen, Shaohua (August 2017). “Welfare-Consistent Global Poverty Measures”. Working Paper Series. doi:10.3386/w23739. Retrieved January 18, 2022.
  314. ^ “Payment Card Industry (PCI) Data Security Standard: Requirements and Security Assessment Procedures – Version 3.2” (PDF). Security Standards Council. April 2016. Retrieved January 25, 2018.
  315. ^ “Security Breach Notification Laws”. National Conference of State Legislatures. April 12, 2017. Retrieved January 25, 2018.
  316. ^ Stein, Stuart G.; Schaberg, Richard A.; Biddle, Laura R., eds. (June 23, 2015). Financial institutions answer book, 2015 : law, governance, compliance. Practising Law Institute. ISBN 978-1-4024-2405-2OCLC 911952833.
  317. ^ “Personal Information and Data Protection”Protecting Personal Information, Hart Publishing, 2019, doi:10.5040/9781509924882.ch-002ISBN 978-1-5099-2485-1S2CID 239275871, retrieved June 5, 2021
  318. ^ Chapter 5. An Act to support and promote electronic commerce by protecting personal information that is collected, used or disclosed in certain circumstances, by providing for the use of electronic means to communicate or record information or transactions and by amending the Canada Evidence Act, the Statutory Instruments Act and the Statute Revision Act. Queen’s Printer for Canada. 2000. OCLC 61417862.
  319. ^ “Comments”Statute Law Review5 (1): 184–188. 1984. doi:10.1093/slr/5.1.184ISSN 0144-3593.
  320. ^ “Personal Information Protection and Electronic Documents Act” (PDF). Canadian Minister of Justice. Retrieved January 25, 2018.
  321. ^ Werner, Martin (May 11, 2011). “Privacy-protected communication for location-based services”Security and Communication Networks9 (2): 130–138. doi:10.1002/sec.330ISSN 1939-0114.
  322. ^ “Regulation for the Assurance of Confidentiality in Electronic Communications” (PDF)Government Gazette of the Hellenic Republic. Hellenic Authority for Communication Security and Privacy. November 17, 2011. Archived from the original (PDF) on June 25, 2013. Retrieved January 25, 2018.
  323. ^ de Guise, Preston (April 29, 2020), “Security, Privacy, Ethical, and Legal Considerations”Data Protection, Auerbach Publications, pp. 91–108, doi:10.1201/9780367463496-9ISBN 978-0-367-46349-6S2CID 219013948, retrieved June 5, 2021
  324. ^ “Αριθμ. απόφ. 205/2013” (PDF)Government Gazette of the Hellenic Republic. Hellenic Authority for Communication Security and Privacy. July 15, 2013. Archived from the original (PDF) on February 4, 2019. Retrieved January 25, 2018.
  325. ^ Andersson and Reimers, 2019, CYBER SECURITY EMPLOYMENT POLICY AND WORKPLACE DEMAND IN THE U.S. GOVERNMENT, EDULEARN19 Proceedings, Publication year: 2019 Pages: 7858-7866 https://library.iated.org/view/ANDERSON2019CYB
  326. ^ “Definition of Security Culture”The Security Culture Framework. April 9, 2014. Archived from the original on January 27, 2019. Retrieved January 27, 2019.
  327. ^ Roer, Kai; Petric, Gregor (2017). The 2017 Security Culture Report – In depth insights into the human factor. CLTRe North America, Inc. pp. 42–43. ISBN 978-1544933948.
  328. ^ Akhtar, Salman, ed. (March 21, 2018). Good Feelings. Routledge. doi:10.4324/9780429475313ISBN 9780429475313.
  329. ^ Anderson, D., Reimers, K. and Barretto, C. (March 2014). Post-Secondary Education Network Security: Results of Addressing the End-User Challenge.publication date Mar 11, 2014 publication description INTED2014 (International Technology, Education, and Development Conference)
  330. Jump up to:a b Schlienger, Thomas; Teufel, Stephanie (December 2003). “Information security culture – from analysis to change”. South African Computer Society (SAICSIT)2003 (31): 46–52. hdl:10520/EJC27949.
  331. ^ “Guidelines for Smart Grid Cyber Security” (PDF)National Institute of Standards and Technology. September 2014. doi:10.6028/NIST.IR.7628r1. Retrieved November 28, 2023.
  332. ^ “ITU-T Recommendation database”.