Uneingeschränkter Zugang

Fuzzy Networks for Modeling Shared Semantic Knowledge


Zitieren

Andreasen, T. (1997). Flexible database querying based on associations of domain values. In Z. W. Raś & A. Skowron (eds.), Foundations of intelligent systems (pp. 570-578). ISMIS 1997. Lecture Notes in Computer Science (Lecture Notes in Artificial Intelligence), vol 1325. Berlin & Heidelberg: Springer. Search in Google Scholar

Augusto, L. M. (2013). Unconscious representations 1: Belying the traditional model of human cognition. Axiomathes, 23, 645-663. Search in Google Scholar

Augusto, L. M. (2020a). Logical consequences. Theory and applications: An introduction. 2nd ed. London: College Publications. Search in Google Scholar

Augusto, L. M. (2020b). Many-valued logics. A mathematical and computational introduction. 2nd ed. London: College Publications. Search in Google Scholar

Augusto, L. M. (2020c). Languages, machines, and classical computation. 2nd ed. London: College Publications. Search in Google Scholar

Augusto, L. M. & Badie, F. (2022). Formal thought disorder and logical form: A symbolic computational model of terminological knowledge. Journal of Knowledge Structures & Systems, 3(4), 1-37. Search in Google Scholar

Augusto, L. M. & Badie, F. (forthcoming). Shared conceptualization and semantic knowledge: A fuzzy model. Search in Google Scholar

Badie, F. (2017). On logical characterisation of human concept learning based on terminological systems. Logic and Logical Philosophy, 27(4), 545-566. Search in Google Scholar

Badie, F. (2018). A description logic based knowledge representation model for concept understanding. In J. van den Herik, A. Rocha, & J. Filipe (eds.). Agents and Artificial Intelligence. ICAART 2017 (Selected Revised Papers). Lecture Notes in Computer Science, vol 10839. Cham: Springer, 1-21. Search in Google Scholar

Badie, F. (2020a). A formal ontology for conception representation in terminological systems. In M. Urbanski, T. Skura, & P. Lupkowski (eds.). Reasoning: Logic, cognition, and games (pp. 137-157). Studies in Logic and Practical Reasoning. London, UK: College Publications. Search in Google Scholar

Badie, F. (2020b): Logic and constructivism: A model of terminological knowledge. Journal of Knowledge Structures & Systems, 1(1), 23-39. Search in Google Scholar

Badie, F. (2021) Nominal Conceptualism and Logical Modelling of Agents’ Conceptions. Логико-философские штудии, 19(1), 95–100. Search in Google Scholar

Badie, F. (2022) Logical Analysis of Symbolic Conception Representation in Terminological Systems. Логико-философские штудии, 20(4), 360–370. Search in Google Scholar

Badie, F. & Augusto, L. M. (2022). The form in formal thought disorder: A model of dyssyntax in semantic networking. AI, 3, 353- 370. Search in Google Scholar

Collins, A. M. & Loftus, E. F. (1975). A spreading activation theory of semantic processing. Psychological Review, 82, 407-428. Search in Google Scholar

Collins, A. M., & Quillian, M. R. (1969). Retrieval time from semantic memory. Journal of Verbal Learning and Verbal Behavior, 8, 240-248. Search in Google Scholar

Dehmer, M., Chen, Z., Emmert-Streib, F. Tripathi, S., Mowshowitz, A. et al. (2019). Measuring the complexity of directed graphs: A polynomial-based approach. PLOS ONE, 14(11). Search in Google Scholar

Ganter, B. & Wille, R. (1999). Formal concept analysis: Mathematical foundations. Berlin & Heidelberg: Springer. Search in Google Scholar

Haniková, Z. (2011). Computational complexity of propositional fuzzy logics. In P. Cintula, P. Hájek, & C. Noguera (eds.), Handbook of mathematical fuzzy logic, Volume 2 (pp. 793–851), London: College Publications. Search in Google Scholar

Hunter, P. & Kreutzer, S. (2008). Digraph measures: Kelly decompositions, games, and orderings. Theoretical Computer Science, 399(3), 206-219. Search in Google Scholar

Johnson-Laird, P. N., Herrmann, D. J., & Chaffin, R. (1984). Only connections: A critique of semantic networks. Psychological Bulletin, 96, 292-315. Search in Google Scholar

Lecours, A. R. & Joanette, Y. (1980). Linguistic and other psychological aspects of paroxysmal aphasia. Brain and Language, 10, 1-23. Search in Google Scholar

Lehmann, F. (1992). Semantic networks. Computers and Mathematical Applications, 23(2-5), 1-50. Search in Google Scholar

Mundici, D. (1987). Satisfiability in many-valued sentential logic is NP-complete. Theoretical Computer Science, 52(1-2), 145-153. Search in Google Scholar

Quillian, M. R. (1967). Word concepts: A theory and simulation of some basic semantic capabilities. Behavioral Science, 12, 410-439. Search in Google Scholar

Quillian, M. R. (1968). Semantic networks. In M. L. Minsky (ed.), Semantic information processing (pp. 227-270). Cambridge, MA: MIT Press. Search in Google Scholar

Quillian, M. R. (1969). The Teachable Language Comprehender: A simulation program and theory of language. Communications of the ACM, 12, 459-476. Search in Google Scholar

Richens, R. H. (1956). Preprogramming for mechanical translation. Mechanical Translation, 3(1), 20-25. Search in Google Scholar

Richens, R. H. (1958). Interlingual machine translation. The Computer Journal, 1(3), 144-147. Search in Google Scholar

Russell, B. (1912). The problems of philosophy. London: Williams & Norgate. Search in Google Scholar

Saitta, L. (1978). Fuzzy semantic network for a speech understanding system – An experimental study. ICASSP ‘78. IEEE International Conference on Acoustics, Speech, and Signal Processing, Tulsa, OK, USA, 1978, pp. 433-436. Search in Google Scholar

Straccia, U. (1998). A fuzzy description logic. Proceedings of AAAI-98, 15th Conference of the American Association for Artificial Intelligence, Madison, US. Search in Google Scholar

Straccia, U. (2001). Reasoning with fuzzy description logics. Journal of Artificial Intelligence Research, 14, 137-166. Search in Google Scholar

Straccia, U. (2005). Towards a fuzzy description logic for the Semantic Web (Preliminary report). 2nd European Semantic Web Conference (ESWC-05), Crete: Springer Verlag, 167-181. Search in Google Scholar

Zadeh, L. A. (1965). Fuzzy sets. Information and Control, 8, 338-353. Search in Google Scholar

Zadeh, L. A. (1975). Fuzzy logic and approximate reasoning. Synthese, 30, 407-428. Search in Google Scholar

eISSN:
1946-0163
Sprache:
Englisch
Zeitrahmen der Veröffentlichung:
2 Hefte pro Jahr
Fachgebiete der Zeitschrift:
Informatik, Künstliche Intelligenz