A comprehensive model and computational methods to improve Situation Awareness in Intelligence scenarios
暂无分享,去创建一个
[1] D. Ciucci. Orthopairs and granular computing , 2016 .
[2] Angelo Gaeta,et al. Spatial and temporal reasoning with granular computing and three way formal concept analysis , 2020, Granular Computing.
[3] Guoyin Wang,et al. DGCC: data-driven granular cognitive computing , 2017, Granular Computing.
[4] Francesco Orciuoli,et al. Understanding the composition and evolution of terrorist group networks: A rough set approach , 2019, Future Gener. Comput. Syst..
[5] Mark Phythian. Understanding the intelligence cycle , 2013 .
[6] Cortney Weinbaum,et al. Intelligence in a Data-Driven Age , 2018 .
[7] Yiyu Yao,et al. The superiority of three-way decisions in probabilistic rough set models , 2011, Inf. Sci..
[8] Qinghua Hu,et al. Fuzzy Probabilistic Approximation Spaces and Their Information Measures , 2006, IEEE Trans. Fuzzy Syst..
[9] Zdzis?aw Pawlak,et al. Rough sets , 2005, International Journal of Computer & Information Sciences.
[11] Witold Pedrycz,et al. Grouping granular structures in human granulation intelligence , 2017, Inf. Sci..
[12] Angelo Gaeta,et al. Hypotheses Analysis and Assessment in Counterterrorism Activities: A Method Based on OWA and Fuzzy Probabilistic Rough Sets , 2020, IEEE Transactions on Fuzzy Systems.
[13] Ronald R. Yager,et al. Generalizing variance to allow the inclusion of decision attitude in decision making under uncertainty , 2006, Int. J. Approx. Reason..
[14] Lotfi A. Zadeh,et al. A New Direction in AI: Toward a Computational Theory of Perceptions , 2001, AI Mag..
[15] Witold Pedrycz,et al. Design of Interval Type-2 Information Granules Based on the Principle of Justifiable Granularity , 2021, IEEE Transactions on Fuzzy Systems.
[16] Yiyu Yao,et al. Perspectives of granular computing , 2005, 2005 IEEE International Conference on Granular Computing.
[17] Hamido Fujita,et al. Partial-overall dominance three-way decision models in interval-valued decision systems , 2020, Int. J. Approx. Reason..
[18] Xiang Yu Zhou,et al. Quantitative Processing of Situation Awareness for Autonomous Ships Navigation , 2019, TransNav, the International Journal on Marine Navigation and Safety of Sea Transportation.
[19] Mieczyslaw M. Kokar,et al. Ontology-based situation awareness , 2009, Inf. Fusion.
[20] Dominik Slezak,et al. The investigation of the Bayesian rough set model , 2005, Int. J. Approx. Reason..
[21] Céline McKeown,et al. Designing for Situation Awareness: An Approach to User-Centered Design , 2013 .
[22] Yiyu Yao,et al. Duality in Rough Set Theory Based on the Square of Opposition , 2013, Fundam. Informaticae.
[23] James D. Marchio. Analytic Tradecraft and the Intelligence Community: Enduring Value, Intermittent Emphasis , 2014 .
[24] Zdzislaw Pawlak,et al. Rough sets and intelligent data analysis , 2002, Inf. Sci..
[25] L. Zadeh. Probability measures of Fuzzy events , 1968 .
[26] Witold Pedrycz,et al. Granular Computing: Perspectives and Challenges , 2013, IEEE Transactions on Cybernetics.
[27] Graeme G. Shanks,et al. A situation awareness model for information security risk management , 2014, Comput. Secur..
[28] Mica R. Endsley,et al. Situation Awareness Problems in General Aviation , 2000 .
[29] Didier Dubois,et al. Structures of opposition induced by relations , 2015, Annals of Mathematics and Artificial Intelligence.
[30] Glenn Shafer,et al. A Mathematical Theory of Evidence , 2020, A Mathematical Theory of Evidence.
[31] Leo Katz,et al. A new status index derived from sociometric analysis , 1953 .
[32] V. Sridhar,et al. Hybrid context model based on multilevel situation theory and ontology for contact centers , 2005, Third IEEE International Conference on Pervasive Computing and Communications Workshops.
[33] Jean-Yves Béziau,et al. The Power of the Hexagon , 2012, Logica Universalis.
[34] Bao Qing Hu,et al. Fuzzy probabilistic rough sets and their corresponding three-way decisions , 2016, Knowl. Based Syst..
[35] Simon A. Dobson,et al. Situation identification techniques in pervasive computing: A review , 2012, Pervasive Mob. Comput..
[36] Yiyu Yao,et al. The geometry of three-way decision , 2021, Applied Intelligence.
[37] Witold Pedrycz,et al. Granular representation and granular computing with fuzzy sets , 2012, Fuzzy Sets Syst..
[38] Yiyu Yao,et al. Sequential three-way decisions with probabilistic rough sets , 2011, IEEE 10th International Conference on Cognitive Informatics and Cognitive Computing (ICCI-CC'11).
[39] Mica R. Endsley,et al. Situation Awareness Oriented Design: From User's Cognitive Requirements to Creating Effective Supporting Technologies , 2003 .
[40] Ronald R. Yager,et al. Looking for Like-Minded Individuals in Social Networks Using Tagging and E Fuzzy Sets , 2013, IEEE Transactions on Fuzzy Systems.
[41] Giuseppe D’Aniello,et al. A granular computing framework for approximate reasoning in situation awareness , 2017, GRC 2017.
[42] Hamido Fujita,et al. Fuzzy neighborhood covering for three-way classification , 2020, Inf. Sci..
[43] Jiye Liang,et al. Uncertainty and Feature Selection in Rough Set Theory , 2011, RSKT.
[44] Dominik Slezak,et al. Rough Sets and Bayes Factor , 2005, Trans. Rough Sets.
[45] Alessio Moretti,et al. Why the Logical Hexagon? , 2012, Logica Universalis.
[46] Richards J. Heuer,et al. Psychology of Intelligence Analysis , 1999 .
[47] Tsau Young Lin,et al. Granular Computing , 2003, RSFDGrC.
[48] Qinghua Hu,et al. Fuzzy probabilistic approximation spaces and their information measures , 2006, IEEE Transactions on Fuzzy Systems.
[49] David R. Mandel,et al. Restructuring structured analytic techniques in intelligence , 2018 .
[50] Keith Devlin,et al. Situation theory and situation semantics , 2006, Logic and the Modalities in the Twentieth Century.
[51] Yiyu Yao,et al. An Outline of a Theory of Three-Way Decisions , 2012, RSCTC.
[52] Angelo Gaeta,et al. Resilience Analysis of Critical Infrastructures: A Cognitive Approach Based on Granular Computing , 2019, IEEE Transactions on Cybernetics.
[53] Andrzej Bargiela,et al. Human-Centric Information Processing Through Granular Modelling , 2009, Human-Centric Information Processing Through Granular Modelling.
[54] Theresa Beaubouef,et al. Rough Sets , 2019, Lecture Notes in Computer Science.
[55] Richard L Wampler,et al. Modeling and Measuring Situation Awareness in the Infantry Operational Environment , 2000 .
[56] Didier Dubois,et al. Oppositions in Rough Set Theory , 2012, RSKT.
[57] Giuseppe D’Aniello,et al. Enforcing situation awareness with granular computing: a systematic overview and new perspectives , 2016 .
[58] Yiyu Yao. A triarchic theory of granular computing , 2016 .
[59] Yiyu Yao,et al. Three-way decision and granular computing , 2018, Int. J. Approx. Reason..
[60] Mica R. Endsley,et al. Toward a Theory of Situation Awareness in Dynamic Systems , 1995, Hum. Factors.
[61] Jingtao Yao,et al. Game-Theoretic Rough Sets , 2011, Fundam. Informaticae.
[62] Giulio Sandini,et al. A Survey of Artificial Cognitive Systems: Implications for the Autonomous Development of Mental Capabilities in Computational Agents , 2007, IEEE Transactions on Evolutionary Computation.
[63] L. Zadeh. Fuzzy sets as a basis for a theory of possibility , 1999 .
[64] Angelo Gaeta,et al. A model based on rough sets for situation comprehension and projection , 2017, 2017 IEEE Conference on Cognitive and Computational Aspects of Situation Management (CogSIMA).
[65] Yiyu Yao,et al. Three-Way Decisions and Cognitive Computing , 2016, Cognitive Computation.