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SinceinitiatedbyLot?A. Zadehin1965,fuzzysettheoryhastriggeredacons- erably large body of areas to blossom. A fuzzy system is, in a very broad sense, anyfuzzylogic-basedsystemwherefuzzylogiccanbeusedeither asthebasisfor the representation of di?erent forms of system knowledge or the model for the interactions and relationships among the system variables. Fuzzy systems have proven to be an important tool for modeling complex systems for which, due to complexity or imprecision, classical tools are unsuccessful. There have been diverse ?elds of applications of fuzzy technology from medicine to management, from engineering to behavioral science, from vehicle control to computational linguistics, and so on. Fuzzy modeling is a conjunction to understand the s- tem’s behavior and build useful mathematical models. Di?erent types of fuzzy models have been proposed in the literature, among which the Takagi-Sugeno (T-S) fuzzy model is a rule-based one suitable for the accurate approximation and identi?cation of a wide class of nonlinear systems. There has been an - creasing amount of work on analysis and synthesis of fuzzy systems based on T-S fuzzy models. Since 2000, T-S fuzzy model approach has been extended to tackleanalysisandcontrolproblemsofnonlinear systemswith time delay. So far extensive results have been presented for investigating T-S fuzzy systems with time delay, many of which adopt an easy and popular scheme, say, linear matrix inequality (LMI) based method. However, there lacks of a monograph in this direction to provide the state-of-the-art of coverage of this new growing area.
Fuzzy systems. --- Time delay systems. --- Systèmes flous --- Systèmes à retard --- Electronic books. -- local. --- Fuzzy systems --- Time delay systems --- Mechanical Engineering - General --- Operations Research --- Mechanical Engineering --- Civil & Environmental Engineering --- Engineering & Applied Sciences --- Time delay control --- Time delay control systems --- Time delay controllers --- Time-delayed systems --- Systems, Fuzzy --- Engineering. --- Artificial intelligence. --- System theory. --- Control engineering. --- Robotics. --- Mechatronics. --- Control. --- Artificial Intelligence (incl. Robotics). --- Control, Robotics, Mechatronics. --- Systems Theory, Control. --- Feedback control systems --- Process control --- System analysis --- Fuzzy logic --- Systems theory. --- Control and Systems Theory. --- Artificial Intelligence. --- AI (Artificial intelligence) --- Artificial thinking --- Electronic brains --- Intellectronics --- Intelligence, Artificial --- Intelligent machines --- Machine intelligence --- Thinking, Artificial --- Bionics --- Cognitive science --- Digital computer simulation --- Electronic data processing --- Logic machines --- Machine theory --- Self-organizing systems --- Simulation methods --- Fifth generation computers --- Neural computers --- Systems, Theory of --- Systems science --- Science --- Philosophy --- Mechanical engineering --- Microelectronics --- Microelectromechanical systems --- Automation --- Control engineering --- Control equipment --- Control theory --- Engineering instruments --- Programmable controllers
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Economic forecasting --- S02/0154 --- S06/0224 --- S10/0251 --- -China --- -Economics --- Forecasting --- Economic indicators --- China: General works--China (and Asia): since 1989 --- China: Politics and government--People's Republic: central government: since 1976 --- China: Economics, industry and commerce--General works and economic history: since 1989 --- Social conditions --- -Forecasting --- China --- Politics and government --- -Economic conditions --- -S02/0154 --- -China: General works--China (and Asia): since 1989 --- -Economic forecasting --- Cina --- Kinë --- Cathay --- Chinese National Government --- Chung-kuo kuo min cheng fu --- Republic of China (1912-1949) --- Kuo min cheng fu (China : 1912-1949) --- Chung-hua min kuo (1912-1949) --- Kina (China) --- National Government (1912-1949) --- China (Republic : 1912-1949) --- People's Republic of China --- Chinese People's Republic --- Chung-hua jen min kung ho kuo --- Central People's Government of Communist China --- Chung yang jen min cheng fu --- Chung-hua chung yang jen min kung ho kuo --- Central Government of the People's Republic of China --- Zhonghua Renmin Gongheguo --- Zhong hua ren min gong he guo --- Kitaĭskai︠a︡ Narodnai︠a︡ Respublika --- Činská lidová republika --- RRT --- Republik Rakjat Tiongkok --- KNR --- Kytaĭsʹka Narodna Respublika --- Jumhūriyat al-Ṣīn al-Shaʻbīyah --- RRC --- Kitaĭ --- Kínai Népköztársaság --- Chūka Jinmin Kyōwakoku --- Erets Sin --- Sin --- Sāthāranarat Prachāchon Čhīn --- P.R. China --- PR China --- Chung-kuo --- Zhongguo --- Zhonghuaminguo (1912-1949) --- Zhong guo --- Chine --- République Populaire de Chine --- República Popular China --- Catay --- VR China --- VRChina --- 中國 --- 中国 --- 中华人民共和国 --- Jhongguó --- Bu̇gu̇de Nayiramdaxu Dundadu Arad Ulus --- Bu̇gu̇de Nayiramdaqu Dumdadu Arad Ulus --- Bu̇gd Naĭramdakh Dundad Ard Uls --- Khi︠a︡tad --- Kitad --- Dumdadu Ulus --- Dumdad Uls --- Думдад Улс --- Kitajska --- Economics --- China (Republic : 1949- ) --- Economic conditions --- Taiwan --- Economic policy --- Social policy --- PRC --- P.R.C. --- BNKhAU --- БНХАУ
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Nuclear warfare --- China --- Military policy.
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Applied physical engineering --- Engineering sciences. Technology --- procesautomatisering --- systeemtheorie --- systeembeheer --- regeltechniek
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This book provides up-to-date developments in the stability analysis and (anti-)synchronization control area for complex-valued neural networks systems with time delay. It brings out the characteristic systematism in them and points out further insight to solve relevant problems. It presents a comprehensive, up-to-date, and detailed treatment of dynamical behaviors including stability analysis and (anti-)synchronization control. The materials included in the book are mainly based on the recent research work carried on by the authors in this domain. The book is a useful reference for all those from senior undergraduates, graduate students, to senior researchers interested in or working with control theory, applied mathematics, system analysis and integration, automation, nonlinear science, computer and other related fields, especially those relevant scientific and technical workers in the research of complex-valued neural network systems, dynamic systems, and intelligent control theory.
Mathematics --- Electrical engineering --- Computer. Automation --- neuronale netwerken --- automatisering --- wiskunde --- automatische regeltechniek
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SinceinitiatedbyLot?A. Zadehin1965,fuzzysettheoryhastriggeredacons- erably large body of areas to blossom. A fuzzy system is, in a very broad sense, anyfuzzylogic-basedsystemwherefuzzylogiccanbeusedeither asthebasisfor the representation of di?erent forms of system knowledge or the model for the interactions and relationships among the system variables. Fuzzy systems have proven to be an important tool for modeling complex systems for which, due to complexity or imprecision, classical tools are unsuccessful. There have been diverse ?elds of applications of fuzzy technology from medicine to management, from engineering to behavioral science, from vehicle control to computational linguistics, and so on. Fuzzy modeling is a conjunction to understand the s- tem's behavior and build useful mathematical models. Di?erent types of fuzzy models have been proposed in the literature, among which the Takagi-Sugeno (T-S) fuzzy model is a rule-based one suitable for the accurate approximation and identi?cation of a wide class of nonlinear systems. There has been an - creasing amount of work on analysis and synthesis of fuzzy systems based on T-S fuzzy models. Since 2000, T-S fuzzy model approach has been extended to tackleanalysisandcontrolproblemsofnonlinear systemswith time delay. So far extensive results have been presented for investigating T-S fuzzy systems with time delay, many of which adopt an easy and popular scheme, say, linear matrix inequality (LMI) based method. However, there lacks of a monograph in this direction to provide the state-of-the-art of coverage of this new growing area.
Applied physical engineering --- Engineering sciences. Technology --- procesautomatisering --- systeemtheorie --- systeembeheer --- regeltechniek
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