A multi-agent algorithm for substantiating
News of the Kabardin-Balkar scientific center of RAS, no. 6 (2022), pp. 48-60.

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The purpose of this study is to develop methods and algorithms for justifying natural language symbols in the course of its development by an intelligent agent when interacting with other agents. A multi-agent neurocognitive architecture of an intelligent agent immersed in a communicative environment has been developed, which forms functional systems based on the coordinated interaction of agents-neurons in its composition. A multi-agent algorithm for substantiating symbols of a simplified conventional language, consisting of single-character words, has been developed, using such functional systems to formalize semantics, taking into account the context of communication.
Mots-clés : intelligent agent
Keywords: symbol substantiation, multi-agent systems, cognitive architectures, neuron-like elements.
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M. I. Anchekov; K. Ch. Bzhikhatlov; S. A. Kankulov; Z. V. Nagoev; O. V. Nagoeva; I. A. Pshenokova. A multi-agent algorithm for substantiating. News of the Kabardin-Balkar scientific center of RAS, no. 6 (2022), pp. 48-60. http://geodesic.mathdoc.fr/item/IZKAB_2022_6_a4/

[1] S. Russell, P. Norvig, Artificial Intelligence: A Modern Approach, Williams ISBN790395-2., Moscow, 2007, 1424 pp. (In Russian)

[2] Z. V. Nagoev, Intelligence, or thinking in living and artificial systems, Izdatel'stvo KBSC RAS, Nal'chik, 2013, 232 pp.

[3] Z. V. Nagoev, “Multiagent recursive cognitive architecture”, Proceedings of the third annual meeting of the BICA Society. Biologically Inspired Cognitive Architectures, Advances in Intelligent Systems and Computing series, Springer, 2012, 247–248

[4] T. Deacon, The Symbolic Species, W. Norton and Co, New York, 1997 | MR

[5] P. Vogt, “Language evolution and robotics: Issues on symbol grounding and language acqui-sition”, Artificial Cognition Systems. Hershey, 2006, 176–209, Idea Group, PA | MR

[6] V. M. Leichik, Terminology. Subject, methods, structure, KomKniga, Moscow, 2005, 256 pp. (In Russian)

[7] Ch. W. Morris, “Foundations of the theory of signs”, Semiotics: Anthology, Yekaterinburg, Moscow, 2001, 46 pp. (In Russian)

[8] N. L. Sukhachev, On the semiotics of Ch.S. Pierce, Nauka, St. Petersburg, 2003, 103 pp. (In Russian)

[9] Frege G., “Uber Sinn und Bedeutung”, Zeitschrift f-r Philosophie und Philosophische Kritik, v. 100, 1892, 25–50 pp.

[10] C. K. Ogden, I. A. Richards, The Meaning of Meaning, New York, Harcourt, Brace World, Inc, 1923

[11] A. Newell, H. A. Simon, “Computer science as empirical inquiry: Symbols and search”, Communications of the ACM, 19 (1976), 113–126 | DOI | MR

[12] J. Hayes P. J. McCarthy, “Some philosophical problems from the standpoint of artificial intelligence”, Machine Intelligence, 4 (1969), 463–502

[13] R. A. Brooks, “Elephants don-t play chess”, Robotics and Autonomous Systems, 6 (1990), 3–15 | DOI

[14] C. S. Peirce, Collected Papers, v. I-VIII, Harvard University Press \date 1931-1958, Cambridge MA | MR

[15] R. Pfeifer, C. Scheier, Understanding Intelligence, MIT Press, Cambridge MA, 1999

[16] T. Ziemke, N. E. Sharkey, “A stroll through the worlds of robots and animals: Applying Jakob von Uexk-ll-s theory of meaning to adaptive robots and artificial life”, Semiotica, 2001, no. 134(1-4), 701-746 | DOI

[17] Z. V. Nagoev, O. V. Nagoeva, I. A. Pshenokova, “Formal model of the semantics of natural language statements based on multi-agent recursive cognitive architectures”, News of Kabardino-Balkarian Scientific Center of RAS, 2017, no. 4(78), 19–31 (In Russian)

[18] Z. V. Nagoev, “Ontoneuromorphogenetic modeling”, News of Kabardino-Balkarian Scientific Center of RAS, 2013, no. 4(54), 46-56 (In Russian)