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Stability analysis and design of fuzzy control system with bounded uncertain delays 被引量:2

Stability analysis and design of fuzzy control system with bounded uncertain delays
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摘要 Fuzzy control problems for systems with bounded uncertain delays were studied. Based on Lyapunov stability theory and matrix theory, a nonlinear state feedback fuzzy controller was designed by linear matrix inequalities (LMI) approach, and the global exponential stability of the closed-loop system was strictly proved. For a fuzzy control system with bounded uncertain delays, under the global exponential stability condition which is reduced to p linear matrix inequalities, the controller guarantees stability performances of state variables. Finally, the simulation shows the validity of the method in tiffs paper. Fuzzy control problems for systems with bounded uncertain delays were studied. Based on Lyapunov stability theory and matrix theory, a nonlinear state feedback fuzzy controller was designed by linear matrix inequalities (LMI) approach, and the global exponential stability of the closed-loop system was strictly proved. For a fuzzy control system with bounded uncertain delays, under the global exponential stability condition which is reduced to p linear matrix inequalities, the controller guarantees stability performances of state variables. Finally, the simulation shows the validity of the method in tiffs paper.
出处 《控制理论与应用(英文版)》 EI 2005年第3期271-274,共4页
基金 Supported by Astronautical Foundation.
关键词 Delayed fuzzy control system STABILITY Linear matrix inequalities (LMI) Delayed fuzzy control system Stability Linear matrix inequalities (LMI)
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