يعرض 1 - 20 نتائج من 1,200 نتيجة بحث عن '"Choice Function"', وقت الاستعلام: 0.66s تنقيح النتائج
  1. 1
    Academic Journal
  2. 2
    Academic Journal
  3. 3
  4. 4
    Academic Journal
  5. 5
    Book

    المؤلفون: Wilson, Nic

    مصطلحات موضوعية: Artificial intelligence, AI, Path independence, Choice function

    وصف الملف: application/pdf

    Relation: info:eu-repo/grantAgreement/SFI/SFI Research Centres Programme::Phase 2/12/RC/2289-P2s/IE/INSIGHT Phase 2/; info:eu-repo/grantAgreement/SFI/SFI Research Centres/12/RC/2289/IE/INSIGHT - Irelands Big Data and Analytics Research Centre/; info:eu-repo/grantAgreement/EC/H2020::RIA/952215/EU/Foundations of Trustworthy AI - Integrating Reasoning, Learning and Optimization/TAILOR; Frontiers in Artificial Intelligence and Applications; ECAI 2023; Twenty-sixth European Conference on Artificial Intelligence (ECAI 2023); https://doi.org/10.3233/FAIA230572; Wilson, N. (2023) ‘Enforcing natural properties of choice functions, with application for combination’, in K. Gal, A. Nowé, G.J. Nalepa, R. Fairstein, and R. Rădulescu (eds) Frontiers in Artificial Intelligence and Applications, Volume 372: ECAI 2023, IOS Press, pp. 2647 - 2654. https://doi.org/10.3233/FAIA230572; 2654; 2647; https://hdl.handle.net/10468/15189; 372

  6. 6
    Academic Journal
  7. 7
    Academic Journal

    المؤلفون: Dube, Partha Pratim

    المصدر: INTERNATIONAL JOURNAL OF ECONOMICS, MANAGEMENT, BUSINESS, AND SOCIAL SCIENCE (IJEMBIS); Vol. 3 No. 2 (2023): May 2023; 308-315 ; 2774-5376 ; 10.59889/ijembis.v3i2

    مصطلحات موضوعية: Choice Function, Uniformity, Immobility, Steadiness

    وصف الملف: application/pdf

  8. 8
  9. 9
    Academic Journal
  10. 10
    Dissertation/ Thesis

    Thesis Advisors: UAM. Departamento de Análisis Económico, Teoría Económica e Historia Económica

    المصدر: Working Papers in Economic Analysis 6 (2012): 1-16
    1
    6
    16

  11. 11
    Dissertation/ Thesis
  12. 12
    Report

    المؤلفون: Mahajne, Muhammad

    المساهمون: Groupe d'Analyse et de Théorie Economique Lyon - Saint-Etienne (GATE Lyon Saint-Étienne), École normale supérieure de Lyon (ENS de Lyon), Université de Lyon-Université de Lyon-Université Lumière - Lyon 2 (UL2)-Université Jean Monnet - Saint-Étienne (UJM)-Centre National de la Recherche Scientifique (CNRS), ANR-16-IDEX-0005,IDEXLYON,IDEXLYON(2016)

  13. 13
    Academic Journal
  14. 14
    Academic Journal
  15. 15
  16. 16
  17. 17
    Conference

    Time: 003

    Relation: Scalable Uncertainty Management : 15th International Conference, SUM 2022; Florence Dupin de Saint-Cyr, Meltem Öztürk-Escoffier, Nico Potyka; Springer; Berlin Heidelberg; 2022; 371; 15th international conference on Scalable Uncertainty Management (SUM 2022); 2022-10; Paris; France; non; https://basepub.dauphine.psl.eu/handle/123456789/23673; 172-185

  18. 18
    Academic Journal

    المصدر: Mathematics and Mathematical Modeling; № 6 (2019); 1-18 ; Математика и математическое моделирование; № 6 (2019); 1-18 ; 2412-5911

    وصف الملف: application/pdf

    Relation: https://www.mathmelpub.ru/jour/article/view/206/162; Ghandi S., Masehian El. Review and taxonomies of assembly and disassembly path planning problems and approaches // Computer-Aided Design. 2015. Vol. 67 – 68. Pp. 58 – 86. DOI:10.1016/j.cad.2015.05.001; Wang X., Ong S.K., Nee A.Y.C. A comprehensive survey of augmented reality assembly research // Advances in Manufacturing. 2016. Vol. 4. No. 1. Pp. 1-22. DOI:10.1007/s40436-015-0131-4; Wang L., Keshavarzmanesh S., Hsi-Yung Feng, Buchal R.O. Assembly pro-cess planning and its future in collaborative manufacturing: a review // The Intern. J. of Advanced Manufacturing Technology. 2009. Vol. 41. No. 1 – 2. Pp. 132 – 144. DOI:10.1007/s00170-008-1458-9; Deepak B.B.V.L., Balamurali Gunji, Bahubalendruni M.V.A. Raju, Biswal B.B. Assembly sequence planning using soft computing methods: a review // Proc. of the Institution of Mechanical Engineers. Pt. E: J. of Process Mechanical Engineering. 2019. Vol. 233. No. 3. Pp. 653-683. DOI:10.1177/0954408918764459; Natarajan B.K. On planning assemblies // 4th Annual symp. on computational geometry: SCG’88 (Urbana-Champaign, Ill., USA, June 1988): Proc. N.Y.: ACM, 1988. Pp. 299-308. DOI:10.1145/73393.73424; Goldwasser M.H., Latombe J.-C., Motwani R. Complexity measures for as-sembly sequences // 12th IEEE Intern. conf. on robotics and automation: ICRA 1996 (Minneapolis, MN, USA, April 22-28, 1996): Proc. Vol. 2. N.Y.: IEEE, 1996. Pp. 1851 – 1857. DOI:10.1109/ROBOT.1996.506981; Wilson R.H., Kavraki L., Latombe J.-C., Lozano-Perez T. Two-handed assembly sequencing // Intern. J. of Robotics Research. 1995. Vol. 14. No. 4. Pp. 335 – 350. DOI:10.1177/027836499501400403; Wolter J.D. A combinatorial analysis of enumerative data structures for assembly planning // IEEE Intern. conf. on robotics and automation: ICRA 1991 (Sacramento, CA, USA, April 9-11, 1991): Proc. N.Y.: IEEE, 1991. Pp. 611 – 618. DOI:10.1109/ROBOT.1991.131649; Whitney D.E. Mechanical assemblies: Their design, manufacture and role in product development. N.Y.; Oxf.: Oxf. Univ. Press, 2004. 517 p.; Yin Z.-P., Ding H., Xiong Y.-L. A virtual prototyping approach to generation and evaluation of mechanical assembly sequences // Proc. of the Institution of Mechanical Engineers. Pt. B: J. of Engineering Manufacture. 2004. Vol. 218. No. 1. Pp. 87 – 102. DOI:10.1243/095440504772830237; Bahubalendruni M.V.A. Raju, Biswal B.B. A review on assembly sequence generation and its automation // Proc. of the Institution of Mechanical Engineers. Pt. C: J. of Mechanical Engineering Science. 2016. Vol. 230. No. 5. Pp. 824-838. DOI:10.1177/0954406215584633; Bozhko A.N. Math modeling of sequential coherent and linear assembly plans in CAD systems // 2018 Global Smart Industry conf.: GloSIC (Chelyabinsk, Russia, November 13-15, 2018): Proc. N.Y.: IEEE, 2018. Pp. 1-5. DOI:10.1109/GloSIC.2018.8570090; Bozhko A.N. Hypergraph model for assembly sequence problem // IoP conf. ser.: Materials Science and Engineering. 2019. Vol. 560. No. 1. P. 012010. DOI:10.1088/1757-899x/560/1/012010; Карпенко А.П. Современные алгоритмы поисковой оптимизации. Алгоритмы, вдохновленные природой: учеб. пособие. М.: Изд-во МГТУ им. Н.Э. Баумана, 2014. 446 с.; Mohd Fadzil Faisae Ab. Rashid. A hybrid ant-wolf algorithm to optimize assembly sequence planning problem // Assembly Automation. 2017. Vol. 37. No. 2. Pp. 238-248. DOI:10.1108/AA-11-2016-143; Muhammad Arif Abdullah, Mohd Fadzil Faisae Ab. Rashid, Zakri Ghazalli. Optimization of assembly sequence planning using soft computing approaches: A review // Archives of Computational Methods in Engineering. 2019. Vol. 26. No. 2. Pp. 461 – 474. DOI:10.1007/s11831-018-9250-y; Balamurali Gunji, Deepak B.B.V.L., Bahubalendruni M.V.A. Raju, Biswal B.B. Optimal assembly sequence planning towards design for assembly using simulated annealing technique // Research into design for communities: 6th intern. conf. on research into design: ICoRD 2017 (Guwahati, India, January 9-11, 2017): Proc. Singapore: Springer, 2017. Pp. 397-407. DOI:10.1007/978-981-10-3518-0_35; Morad Behandish and Horea T. Ilies. Haptic assembly and prototyping: An expository review. 2016. Режим доступа: https://arxiv.org/pdf/1712.00750.pdf (дата обращения 25.01.2020).; Bahubalendruni M.V.A. Raju, Biswal B.B., Deepak B.B.V.L. Optimal ro-botic assembly sequence generation using particle swarm optimization // J. of Automation and Control Engineering. 2016. Vol. 4. No. 2. Pp. 89 – 95. DOI:10.12720/joace.4.2.89-95; Lee Dong-Ho, Kang J.-G., Xirouchakis P. Disassembly planning and scheduling: review and further research // Proc. of the Institution of Mechanical Engineers. Pt. B: J. of Engineering Manufacture. 2001. Vol. 215. No. 5. Pp. 695-709. DOI:10.1243/0954405011518629; Cong Lu, Jerry Ying Hsi Fuh, Yoke San Wong. Advanced assembly planning approach using a multi-objective genetic algorithm // Cong Lu, Jerry Ying Hsi Fuh, Yoke San Wong. Collaborative product assembly design and assembly planning: methodologies and applications. Oxf.; Camb.; Phil.: Woodhead Publ., 2011. Pp. 107 – 146. DOI:10.1533/9780857093882; Qin Yong-Fa, Xu Zhi-Gang. Assembly process planning using a mul-ti-objective optimization method // Intern. conf. on mechatronics and automation: ICMA 2007 (Harbin, China, August 5-8, 2007): Proc. N.Y.: IEEE, 2007. Pp. 593 – 598. DOI:10.1109/ICMA.2007.4303610; Mohd Fadzil Faisae Rashid, Windo Hutabarat, Ashutosh Tiwari. A review on assembly sequence planning and assembly line balancing using soft computing approaches // The Intern. J. of Advanced Manufacturing Technology. 2012. Vol. 59. No. 1 – 4. Pp. 335 – 349. DOI:10.1007/s00170-011-3499-8; White D.J. Decision theory. N.Y.: Taylor & Francis, 2006. 196 p. DOI:10.4324/9780203793695; Roman S. Lattices and ordered sets. N.Y.: Springer, 2008. 305 p. DOI:10.1007/978-0-387-78901-9; Bozhko A.N. Theoretic-lattice approach to computer aided generation of assembly units // Intern. Russian automation conf.: RusAutoCon 2018 (Sochi, Russia, September 9-16, 2018): Proc. N.Y.: IEEE, 2018. 5 p. DOI:10.1109/RUSAUTOCON.2018.8501839; Jie Lu, Guangquan Zhang, Da Ruan, Fengjie Wu. Multi-objective group decision making: Methods, software and applications with fuzzy set techniques. Singapore: World Scientific, 2007. 390 p. DOI:10.1142/p505; https://www.mathmelpub.ru/jour/article/view/206

  19. 19
    Academic Journal
  20. 20
    Report

    Relation: Series: Center for Mathematical Economics Working Papers; No. 660; gbv-ppn:1785207636; urn:nbn:de:0070-pub-29603681; http://hdl.handle.net/10419/249883; RePEc:bie:wpaper:660