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Language and cognition integration through modeling field theory: Category formation for symbol grounding

Vadim Tikhanoff, José F. Fontanari, Angelo Cangelosi, Leonid Perlovsky

发表年份
2006
引用次数
30

摘要

Modeling Field Theory is based on the principle of associating lower-level signals (e.g., inputs, bottom-up signals) with higher-level concept-models (e.g. internal representations, categories/concepts, top-down signals) avoiding the combinatorial complexity inherent to such a task. In this paper we present an extension of the Modeling Field Theory algorithm for the classification of objects. Simulations show that (i) the system is able to dynamically adapt when an additional feature is introduced during learning, (ii) that this algorithm can be applied to the classification of action patterns in the context of cognitive robotics and (iii) that it is able to classify multi-feature objects from complex stimulus set. The use of Modeling Field Theory for studying the integration of language and cognition in robots is discussed.

关键词

Computer scienceArtificial intelligenceField (mathematics)Cognitive roboticsCognitive modelCognitionArtificial neural networkRoboticsRobotMathematics

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