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Robust adaptive actuator failure compensation for a class of uncertain nonlinear systems
Authors:Mahnaz Hashemi  Javad Askari  Jafar Ghaisari  Marzieh Kamali
Affiliation:1.Department of Electrical and Computer Engineering,Isfahan University of Technology,Isfahan,Iran
Abstract:This paper presents a robust adaptive state feedback control scheme for a class of parametric-strict-feedback nonlinear systems in the presence of time varying actuator failures. The designed adaptive controller compensates a general class of actuator failures without any need for explicit fault detection. The parameters, times, and patterns of the considered failures are completely unknown. The proposed controller is constructed based on a backstepping design method. The global boundedness of all the closed-loop signals is guaranteed and the tracking error is proved to converge to a small neighborhood of the origin. The proposed approach is employed for a two-axis positioning stage system as well as an aircraft wing system. The simulation results show the correctness and effectiveness of the proposed robust adaptive actuator failure compensation approach.
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