Direct adaptive output-feedback fuzzy controller for a nonaffine nonlinear system

Control Theory and Applications, IEE Proceedings -(2004)

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摘要
A direct adaptive output-feedback controller for highly nonlinear systems is proposed by considering uncertain or ill-defined nonaffine nonlinear systems and employing a static fuzzy logic system (FLS) with flexible structure, i.e. online variation of the number of fuzzy rules. A linear error observer whose dynamic order is the same as that of the controlled system is employed and the FLS approximates and adaptively cancels an unknown plant nonlinearity using the observed state variables. A control law and adaptive laws for unknown fuzzy parameters and bounding constant are established so that the whole closed-loop system is stable in the sense of Lyapunov. The state observation error and tracking error are guaranteed to be uniformly ultimately bounded. No a priori knowledge of an upper bound on a lumped uncertainty is required.
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关键词
Lyapunov methods,adaptive control,closed loop systems,control nonlinearities,feedback,flexible structures,fuzzy control,fuzzy logic,fuzzy set theory,fuzzy systems,nonlinear control systems,observers,stability,FLS,Lyapunov methods,adaptive output feedback fuzzy controller,closed loop system,flexible structure,fuzzy rules,linear error observer,nonaffine nonlinear system,state observation error,state tracking error,static fuzzy logic system,uncertain systems,unknown fuzzy parameters,unknown plant nonlinearity
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