Fault detection for T-S fuzzy time-delay systems: delta operator and input-output methods.

IEEE T. Cybernetics(2015)

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摘要
This paper focuses on the problem of fault detection for Takagi-Sugeno fuzzy systems with time-varying delays via delta operator approach. By designing a filter to generate a residual signal, the fault detection problem addressed in this paper can be converted into a filtering problem. The time-varying delay is approximated by the two-term approximation method. Fuzzy augmented fault detection system is constructed in δ -domain, and a threshold function is given. By applying the scaled small gain theorem and choosing a Lyapunov-Krasovskii functional in δ -domain, a sufficient condition of asymptotic stability with a prescribed H∞ disturbance attenuation level is derived for the proposed fault detection system. Then, a solvability condition for the designed fault detection filter is established, with which the desired filter can be obtained by solving a convex optimization problem. Finally, an example is given to demonstrate the feasibility and effectiveness of the proposed method.
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关键词
fault detection,t-s fuzzy time-delay systems,lyapunov-krasovskii functional,solvability condition,asymptotic stability,approximation theory,threshold function,time-varying systems,convex optimization problem,time-varying delays,two-term approximation method,time-varying delay,t-s fuzzy system,takagi-sugeno fuzzy systems,delta operator,convex programming,delays,input-output stability,computability,fault diagnosis,delta operator method,filter design,input-output method,h∞ control,fuzzy control,lyapunov methods,fault detection system,h∞ disturbance attenuation level,fuzzy systems,radio frequency,nonlinear systems,symmetric matrices
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