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Algorithms[edit]

Artificial Intelligence[edit]

A–Z

Companies[edit]

A–M

N–Z

Compilers[edit]

Computer books[edit]

Computer architecture[edit]

Computer languages[edit]

Hardware[edit]

The Internet[edit]

Multicast has been part of IP for a long time, though not so well used. Broadcast, as in over the air, is an efficient way to get a high bandwidth signal to many people. Separate IP streams are not. Maybe that is related. Gah4 (talk) 23:46, 11 December 2020 (UTC)[reply]

[265];

Operating systems[edit]

People[edit]


A–L (by last name)

M–Z (by last name)

Programming[edit]

Protocols[edit]

Real-time computing[edit]

Searching; search engines[edit]

Security[edit]

See also: Wikipedia:WikiProject Computer Security and Wikipedia:WikiProject Computer Security/Article requests

A–M

N–Z

Software[edit]

A–B

C–D

[573];[574];

E–F

G–J

[667] [668]

K–L

M–N

O–P

Q–R

S

T–V

W–Z

Software engineering[edit]

Storage[edit]


File formats

Databases

Theory and theorems[edit]

Widget toolkits[edit]

Other[edit]

Wikiprojects with lists of missing computer articles

References[edit]

  1. ^ Ottaviano, Giuseppe; Venturini, Rossano (2014). "Partitioned Elias-Fano indexes" (PDF). Proceedings of the 37th international ACM SIGIR conference on Research & development in information retrieval. pp. 273–282. doi:10.1145/2600428.2609615. ISBN 9781450322577. S2CID 14124415. ((cite book)): |journal= ignored (help)
  2. ^ Hodge, Victoria J. and Austin, Jim (2001). "Hierarchical growing cell structures: TreeGCS" (PDF). IEEE Transactions on Knowledge and Data Engineering. 13 (2). IEEE: 207–218. doi:10.1109/69.917561.((cite journal)): CS1 maint: multiple names: authors list (link)
  3. ^ Beetz, Michael and Mosenlechner, Lorenz and Tenorth, Moritz (2010). CRAM A Cognitive Robot Abstract Machine for everyday manipulation in human environments. 2010 IEEE/RSJ International Conference on Intelligent Robots and Systems. IEEE. pp. 1012–1017. doi:10.1109/iros.2010.5650146.((cite conference)): CS1 maint: multiple names: authors list (link)
  4. ^ Wei, Changyun and Hindriks, Koen V (2012). An agent-based cognitive robot architecture. International Workshop on Programming Multi-Agent Systems. Springer. pp. 54–71. doi:10.1007/978-3-642-38700-5_4.((cite conference)): CS1 maint: multiple names: authors list (link)
  5. ^ Martinez, David and Alenya, Guillem and Torras, Carme (2017). "Relational reinforcement learning with guided demonstrations". Artificial Intelligence. 247. Elsevier: 295–312. doi:10.1016/j.artint.2015.02.006.((cite journal)): CS1 maint: multiple names: authors list (link)
  6. ^ Quispe, Ana Huaman and Amor, Heni Ben and Christensen, Henrik I (2018). A taxonomy of benchmark tasks for robot manipulation. Robotics Research. Springer. pp. 405–421.((cite conference)): CS1 maint: multiple names: authors list (link)
  7. ^ Pengcheng Wang and Jonathan Rowe and Bradford Mott and James Lester (2016). Decomposing Drama Management in Educational Interactive Narrative: A Modular Reinforcement Learning Approach. Interactive Storytelling. Springer International Publishing. pp. 270–282. doi:10.1007/978-3-319-48279-8_24.
  8. ^ Rowe, Jonathan P and Mcquiggan, Scott W and Mott, Bradford W and Lester, James C (2007). Motivation in narrative-centered learning environments. Proceedings of the workshop on narrative learning environments, AIED. pp. 40–49.((cite conference)): CS1 maint: multiple names: authors list (link)
  9. ^ Graves, Alex and Bellemare, Marc G and Menick, Jacob and Munos, Remi and Kavukcuoglu, Koray (2017). Automated curriculum learning for neural networks. Proceedings of the 34th International Conference on Machine Learning-Volume 70. JMLR. pp. 1311–1320.((cite conference)): CS1 maint: multiple names: authors list (link)
  10. ^ Andrej Karpathy and Michiel van de Panne (2012). Curriculum Learning for Motor Skills. Advances in Artificial Intelligence. Springer Berlin Heidelberg. pp. 325–330. doi:10.1007/978-3-642-30353-1_31.
  11. ^ Ola Pettersson (2005). "Execution monitoring in robotics: A survey". Robotics and Autonomous Systems. 53 (2). Elsevier BV: 73–88. doi:10.1016/j.robot.2005.09.004.
  12. ^ Francois Mairesse and Steve Young (2014). "Stochastic Language Generation in Dialogue using Factored Language Models". Computational Linguistics. 40 (4). MIT Press - Journals: 763–799. doi:10.1162/coli_a_00199. S2CID 14875383.
  13. ^ Yannakakis, Georgios (2018). Artificial intelligence and games. Cham, Switzerland: Springer. ISBN 978-3-319-63519-4. OCLC 1023801414.
  14. ^ Selase, Aphu Elvis and Xing, Chen and Agbadze, Obed Kweku and Thompson, Brantson Eric (2015). "The General Overview of the Phrase 'Fuzzy Logic'". International Journal of Engineering, Management and Sciences. 2 (5): 68–73.((cite journal)): CS1 maint: multiple names: authors list (link)
  15. ^ Rosental, Claude (2004). Fuzzyfying the world: social practices of showing the properties of fuzzy logic. Growing explanations: Historical perspectives on recent science. Duke University Press Durham, NC. pp. 159–178.
  16. ^ Hellendoorn, Hans (1997). Fuzzy model identification : selected approaches. Berlin New York: Springer. ISBN 978-3-642-60767-7. OCLC 606980740.
  17. ^ Hung T. Nguyen; Michio Sugeno (6 December 2012). Fuzzy Systems: Modeling and Control. Springer Science & Business Media. ISBN 978-1-4615-5505-6.
  18. ^ Mordeson, John (2002). Fuzzy automata and languages : theory and applications. Boca Raton, Fla: Chapman & Hall/CRC. ISBN 978-1-4200-3564-3. OCLC 276796506.
  19. ^ Apostolos Syropoulos (23 October 2013). Theory of Fuzzy Computation. Springer Science & Business Media. p. 51-. ISBN 978-1-4614-8379-3.
  20. ^ Thomas Cederborg and Ming Li and Adrien Baranes and Pierre-Yves Oudeyer (2010). Incremental local online Gaussian Mixture Regression for imitation learning of multiple tasks. 2010 IEEE/RSJ International Conference on Intelligent Robots and Systems. IEEE. doi:10.1109/iros.2010.5652040.
  21. ^ Wang, Wenshuo and Xi, Junqiang and Zhao, Ding (2018). "Learning and inferring a driver's braking action in car-following scenarios". IEEE Transactions on Vehicular Technology. 67 (5). IEEE: 3887–3899. arXiv:1801.03905. doi:10.1109/TVT.2018.2793889. S2CID 21679046.((cite journal)): CS1 maint: multiple names: authors list (link)
  22. ^ Steven Rabin (17 April 2015). Game AI Pro 2: Collected Wisdom of Game AI Professionals. CRC Press. pp. 117–. ISBN 978-1-4822-5480-8.
  23. ^ Rubin, Jonathan and Ram, Ashwin (2012). Capturing and adapting traces for character control in computer role playing games. Proceedings of the ICCBR 2012 Workshop TRUE. pp. 193–201.((cite conference)): CS1 maint: multiple names: authors list (link)
  24. ^ Sierra-Santibanez, Josefina (1998). A Declarative Formalization of STRIPS. ECAI. pp. 509–513.
  25. ^ Panait, Liviu and Luke, Sean (2004). Learning ant foraging behaviors. proceedings of the Ninth International Conference on the Simulation and Synthesis of Living Systems (ALIFE9). pp. 575–580.((cite conference)): CS1 maint: multiple names: authors list (link)
  26. ^ Peter Sunehag and Guy Lever and Siqi Liu and Josh Merel and Nicolas Heess and Joel Z. Leibo and Edward Hughes and Tom Eccles and Thore Graepel (2019). Reinforcement Learning Agents acquire Flocking and Symbiotic Behaviour in Simulated Ecosystems. The 2019 Conference on Artificial Life. MIT Press. doi:10.1162/isal_a_00148.
  27. ^ Paljug, Eric and Ohm, Timothy and Hayati, Samad (1995). The JPL Serpentine Robot: a 12-DOF system for inspection. Proceedings of 1995 IEEE International Conference on Robotics and Automation. Vol. 3. IEEE. pp. 3143–3148.((cite conference)): CS1 maint: multiple names: authors list (link)
  28. ^ Menon, Midhun S and Ravi, VC and Ghosal, Ashitava (2017). "Trajectory planning and obstacle avoidance for hyper-redundant serial robots". Journal of Mechanisms and Robotics. 9 (4). American Society of Mechanical Engineers Digital Collection. doi:10.1115/1.4036571.((cite journal)): CS1 maint: multiple names: authors list (link)
  29. ^ Thomas R. Roth-Berghofer and Jörg Cassens (2005). "Mapping Goals and Kinds of Explanations to the Knowledge Containers of Case-Based Reasoning Systems". Case-Based Reasoning Research and Development. Case-Based Reasoning Research and Development. Lecture Notes in Computer Science. Vol. 3620. Springer Berlin Heidelberg. pp. 451–464. doi:10.1007/11536406_35. ISBN 978-3-540-28174-0.
  30. ^ Cordier, Amelie and Lefevre, Marie and Champin, Pierre-Antoine and Georgeon, Olivier and Mille, Alain (2013). Trace-Based Reasoning-Modeling interaction traces for reasoning on experiences. The Twenty-Sixth International FLAIRS Conference.((cite conference)): CS1 maint: multiple names: authors list (link)
  31. ^ Andrew Chisholm and Will Radford and Ben Hachey (2017). Learning to generate one-sentence biographies from Wikidata. Proceedings of the 15th Conference of the European Chapter of the Association for Computational Linguistics: Volume 1, Long Papers. Association for Computational Linguistics. doi:10.18653/v1/e17-1060.
  32. ^ 'Less Than One'-Shot Learning: Learning N Classes From M< N Samples. Proceedings of the 35th AAAI Conference on Artificial Intelligence. Association for the Advancement of Artificial Intelligence (AAAI). 2021. arXiv:2009.08449.
  33. ^ "A radical new technique lets AI learn with practically no data".
  34. ^ "How to Make Artificial Intelligence More Democratic". Scientific American.
  35. ^ Julian Togelius and Noor Shaker and Sergey Karakovskiy and Georgios N. Yannakakis (2013). "The Mario AI Championship 2009-2012". AI Magazine. 34 (3). Association for the Advancement of Artificial Intelligence (AAAI): 89–92. doi:10.1609/aimag.v34i3.2492.
  36. ^ Rachmat, Haris and Mulyana, Tatang and Hasan, Sulaiman bin H and bin Ibrahim, Mohd Rasidi (2016). Design selection of In-UVAT using MATLAB fuzzy logic toolbox. International Conference on Soft Computing and Data Mining. Springer. pp. 538–545.((cite conference)): CS1 maint: multiple names: authors list (link)
  37. ^ Castillo, Oscar and Melin, Patricia and Castro, Juan R (2013). "Computational intelligence software for interval type-2 fuzzy logic". Computer Applications in Engineering Education. 21 (4). Wiley Online Library: 737–747. doi:10.1002/cae.20522. S2CID 12384373.((cite journal)): CS1 maint: multiple names: authors list (link)
  38. ^ Kovar, Lucas and Gleicher, Michael and Pighin, Frederic (2008). Motion graphs. ACM SIGGRAPH 2008 classes. ACM. p. 51.((cite conference)): CS1 maint: multiple names: authors list (link)
  39. ^ Charles Ashbacher (2002). Introduction to Neutrosophic Logic. Infinite Study. ISBN 978-1-931233-60-6.
  40. ^ Wang, Pei (2013). Non-axiomatic logic: A model of intelligent reasoning. World Scientific.
  41. ^ Daniel Hernandez (28 June 1994). Qualitative Representation of Spatial Knowledge. Springer Science & Business Media. ISBN 978-3-540-58058-4.
  42. ^ Policy invariance under reward transformations Theory and application to reward shaping
  43. ^ "Transfer learning for reinforcement learning domains: A survey."
  44. ^ Lionel Birglen; Thierry Laliberté; Clément M. Gosselin (11 February 2008). Underactuated Robotic Hands. Springer Science & Business Media. pp. 17–. ISBN 978-3-540-77458-7.
  45. ^ Doherty, Patrick and Heintz, Fredrik and Landen, David (2010). A distributed task specification language for mixed-initiative delegation. International Conference on Principles and Practice of Multi-Agent Systems. Springer. pp. 42–57.((cite conference)): CS1 maint: multiple names: authors list (link)
  46. ^ Mericli, Cetin and Klee, Steven D and Paparian, Jack and Veloso, Manuela (2014). An interactive approach for situated task specification through verbal instructions. Proceedings of the 2014 international conference on Autonomous agents and multi-agent systems. pp. 1069–1076.((cite conference)): CS1 maint: multiple names: authors list (link)
  47. ^ Lorenza Saitta; Jean-Daniel Zucker (5 June 2013). Abstraction in Artificial Intelligence and Complex Systems. Springer Science & Business Media. pp. 302–. ISBN 978-1-4614-7052-6.
  48. ^ Lyubomir T. Gruyitch (3 October 2018). Tracking Control of Linear Systems. CRC Press. pp. 119–. ISBN 978-1-4665-8752-6.
  49. ^ Zobel, Dieter and Polock, David. Mobile autonomous control: the truck backer-upper problem. Proceedings of the Real-Time Mission Critical Systems (RTMCS) Workshop, in conjunction with the 20th IEEE Real-Time Systems Symposium (RTSS’99), Scottsdale, Arizona. Vol. 30. Citeseer.((cite conference)): CS1 maint: multiple names: authors list (link)
  50. ^ Laird, John E and Rosenbloom, Paul S and Newell, Allen (1984). Towards Chunking as a General Learning Mechanism. AAAI. pp. 188–192.((cite conference)): CS1 maint: multiple names: authors list (link)
  51. ^ Cox, Michael T (2016). A model of planning, action, and interpretation with goal reasoning. Proceedings of the fourth Annual Conf. on Advances in Cognitive Systems. pp. 48–63.
  52. ^ Shuzhi Sam Ge and Hongbin Ma and Kai-Yew Lum (2007). Detectability in games of pursuit evasion with antagonizing players. 2007 46th IEEE Conference on Decision and Control. IEEE. doi:10.1109/cdc.2007.4434200.
  53. ^ Steven Rabin (2015). Rabin, Steven (ed.). Game AI Pro 2: collected wisdom of game AI professionals. A K Peters/CRC Press. doi:10.1201/b18373. ISBN 9780429160790.
  54. ^ Pochampally, Yashaswi and Karlapalem, Kamalakar and Yarrabelly, Navya (2016). Semi-supervised automatic generation of wikipedia articles for named entities. Tenth International AAAI Conference on Web and Social Media.((cite conference)): CS1 maint: multiple names: authors list (link)
  55. ^ Syed, Zareen and Finin, Tim and Mulwad, Varish and Joshi, Anupam (2010). Exploiting a web of semantic data for interpreting tables. Proceedings of the Second Web Science Conference.((cite conference)): CS1 maint: multiple names: authors list (link)
  56. ^ Norman I. Badler; Cary B. Phillips; Bonnie Lynn Webber (2 September 1993). Simulating Humans: Computer Graphics, Animation, and Control. OUP USA. pp. 224–. ISBN 978-0-19-507359-1.
  57. ^ Louis Leung and Paul S. N. Lee (2012). "Impact of Internet Literacy, Internet Addiction Symptoms, and Internet Activities on Academic Performance". Social Science Computer Review. 30 (4). SAGE Publications: 403–418. doi:10.1177/0894439311435217. S2CID 60585963.
  58. ^ Impacts of Cybersecurity of Social Engineering
  59. ^ Requested articles/Applied arts and sciences/Computer science, computing, and Internet publications indexed by Google Scholar
  60. ^ Requested articles/Applied arts and sciences/Computer science, computing, and Internet publications indexed by Google Scholar
  61. ^ "2019 Young Investigator Award Recipients". Office of Naval Research. Retrieved 19 February 2022.
  62. ^ "CAREER: The optimal use of data". NSF Award Search. National Science Foundation. Retrieved 19 February 2022.
  63. ^ "Alfred P. Sloan Research Fellowships 2017" (PDF). Alfred P. Sloan Foundation. Retrieved 19 February 2022.
  64. ^ Requested articles/Applied arts and sciences/Computer science, computing, and Internet publications indexed by Google Scholar
  65. ^ Orwig, Greg (March 5, 1997). "University of Washington computing team tops elite universities at international programming contest". UW News. Retrieved 19 February 2022.
  66. ^ Requested articles/Applied arts and sciences/Computer science, computing, and Internet publications indexed by Google Scholar
  67. ^ Requested articles/Applied arts and sciences/Computer science, computing, and Internet publications indexed by Google Scholar
  68. ^ "Open Compute Project Foundation and JEDEC Announce a New Collaboration" (Press release). 24 January 2023.
  69. ^ https://www.jedec.org/news/pressreleases/jedec-and-open-compute-project-foundation-form-new-collaboration
  70. ^ "Open Compute Project".
  71. ^ Felczak, Mateusz (2016). Justice and Violence: the Study of Gameplay in the Infinite Engine cRPGs. Philosophy of Computer Games Conference. Institute of Digital Games, University of Malta.
  72. ^ Meinecke, Gerrit and Albiez, Jan and Joyeux, Sylvain and Ratmeyer, Volker and Renken, Jens (2013). OROCOS based control software of the new developed MARUM hybrid-ROV for under-ice applications. 2013 OCEANS-San Diego. IEEE. pp. 1–6.((cite conference)): CS1 maint: multiple names: authors list (link)
  73. ^ Paul Matthews and Phil Topham and Praminda Caleb-Solly (2018). "Interaction and Engagement with an Anxiety Management App: Analysis Using Large-Scale Behavioral Data". JMIR Mental Health. 5 (4). JMIR Publications Inc.: e58. doi:10.2196/mental.9235. PMC 6324647. PMID 30287415.
  74. ^ Masataka Goto and Roger B. Dannenberg (2019). "Music Interfaces Based on Automatic Music Signal Analysis: New Ways to Create and Listen to Music". IEEE Signal Processing Magazine. 36 (1). Institute of Electrical and Electronics Engineers (IEEE): 74–81. Bibcode:2019ISPM...36...74G. doi:10.1109/msp.2018.2874360. S2CID 57190017.
  75. ^ Bengio, Yoshua and Ducharme, Rejean and Vincent, Pascal and Jauvin, Christian (2003). "A neural probabilistic language model". Journal of Machine Learning Research. 3 (Feb): 1137–1155.((cite journal)): CS1 maint: multiple names: authors list (link)
  76. ^ Alexei Zamyatin, 24 august 2017. Merged Mining: Analysis of Effects and Implications http://repositum.tuwien.ac.at/obvutwhs/download/pdf/2315652?originalFilename=true
  77. ^ Gillis, Alexander (May 1, 2021). "zero-touch provisioning (ZTP)". Techtarget.com. Retrieved January 3, 2023.