Abstract intelligence: embodying and enabling cognitive systems by mathematical engineering

Basic studies in denotational mathematics and mathematical engineering have led to the theory of abstract intelligence (aI), which is a set of mathematical models of natural and computational intelligence in cognitive informatics (CI) and cognitive computing (CC). Abstract intelligence triggers the...

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Päätekijät: Wang, Y, Zadeh, L, Widrow, B, Howard, N, Beaufays, F, Baciu, G, Hsu, D, Luo, G, Mizoguchi, F, Patel, S, Raskin, V, Tsumoto, S, Wei, W, Zhang, D
Aineistotyyppi: Journal article
Kieli:English
Julkaistu: IGI Global 2017
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author Wang, Y
Zadeh, L
Widrow, B
Howard, N
Beaufays, F
Baciu, G
Hsu, D
Luo, G
Mizoguchi, F
Patel, S
Raskin, V
Tsumoto, S
Wei, W
Zhang, D
author_facet Wang, Y
Zadeh, L
Widrow, B
Howard, N
Beaufays, F
Baciu, G
Hsu, D
Luo, G
Mizoguchi, F
Patel, S
Raskin, V
Tsumoto, S
Wei, W
Zhang, D
author_sort Wang, Y
collection OXFORD
description Basic studies in denotational mathematics and mathematical engineering have led to the theory of abstract intelligence (aI), which is a set of mathematical models of natural and computational intelligence in cognitive informatics (CI) and cognitive computing (CC). Abstract intelligence triggers the recent breakthroughs in cognitive systems such as cognitive computers, cognitive robots, cognitive neural networks, and cognitive learning. This paper reports a set of position statements presented in the plenary panel (Part II) of IEEE ICCI*CC'16 on Cognitive Informatics and Cognitive Computing at Stanford University. The summary is contributed by invited panelists who are part of the world's renowned scholars in the transdisciplinary field of CI and CC.
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spelling oxford-uuid:73db8bd2-1c28-4a9f-b36f-04855ee20f5e2022-03-26T19:59:11ZAbstract intelligence: embodying and enabling cognitive systems by mathematical engineeringJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:73db8bd2-1c28-4a9f-b36f-04855ee20f5eEnglishSymplectic Elements at OxfordIGI Global2017Wang, YZadeh, LWidrow, BHoward, NBeaufays, FBaciu, GHsu, DLuo, GMizoguchi, FPatel, SRaskin, VTsumoto, SWei, WZhang, DBasic studies in denotational mathematics and mathematical engineering have led to the theory of abstract intelligence (aI), which is a set of mathematical models of natural and computational intelligence in cognitive informatics (CI) and cognitive computing (CC). Abstract intelligence triggers the recent breakthroughs in cognitive systems such as cognitive computers, cognitive robots, cognitive neural networks, and cognitive learning. This paper reports a set of position statements presented in the plenary panel (Part II) of IEEE ICCI*CC'16 on Cognitive Informatics and Cognitive Computing at Stanford University. The summary is contributed by invited panelists who are part of the world's renowned scholars in the transdisciplinary field of CI and CC.
spellingShingle Wang, Y
Zadeh, L
Widrow, B
Howard, N
Beaufays, F
Baciu, G
Hsu, D
Luo, G
Mizoguchi, F
Patel, S
Raskin, V
Tsumoto, S
Wei, W
Zhang, D
Abstract intelligence: embodying and enabling cognitive systems by mathematical engineering
title Abstract intelligence: embodying and enabling cognitive systems by mathematical engineering
title_full Abstract intelligence: embodying and enabling cognitive systems by mathematical engineering
title_fullStr Abstract intelligence: embodying and enabling cognitive systems by mathematical engineering
title_full_unstemmed Abstract intelligence: embodying and enabling cognitive systems by mathematical engineering
title_short Abstract intelligence: embodying and enabling cognitive systems by mathematical engineering
title_sort abstract intelligence embodying and enabling cognitive systems by mathematical engineering
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