Title :
Observer-Based Adaptive Fuzzy Backstepping Dynamic Surface Control for a Class of MIMO Nonlinear Systems
Author :
Tong, Shao-Cheng ; Li, Yong-Ming ; Feng, Gang ; Li, Tie-Shan
Author_Institution :
Dept. of Math., Liaoning Univ. of Technol., Jinzhou, China
Abstract :
In this paper, an adaptive fuzzy backstepping dynamic surface control (DSC) approach is developed for a class of multiple-input-multiple-output nonlinear systems with immeasurable states. Using fuzzy-logic systems to approximate the unknown nonlinear functions, a fuzzy state observer is designed to estimate the immeasurable states. By combining adaptive-backstepping technique and DSC technique, an adaptive fuzzy output-feedback backstepping-control approach is developed. The proposed control method not only overcomes the problem of “explosion of complexity” inherent in the backstepping-design methods but also overcomes the problem of unavailable state measurements. It is proved that all the signals of the closed-loop adaptive-control system are semiglobally uniformly ultimately bounded, and the tracking errors converge to a small neighborhood of the origin. Simulation results are provided to show the effectiveness of the proposed approach.
Keywords :
MIMO systems; adaptive control; closed loop systems; feedback; fuzzy control; nonlinear control systems; nonlinear dynamical systems; nonlinear functions; DSC technique; MIMO nonlinear system; adaptive fuzzy output feedback backstepping control; backstepping design method; closed loop adaptive control system signal; error tracking; fuzzy logic system; fuzzy state observer; immeasurable state; multiple input multiple output nonlinear system; nonlinear function approximation; observer-based adaptive fuzzy backstepping dynamic surface control; state measurement; Adaptive systems; Artificial neural networks; Backstepping; Control systems; MIMO; Nonlinear systems; Observers; Adaptive output-feedback control; backstepping design; dynamic-surface-control (DSC) technique; fuzzy-logic systems (FLSs); nonlinear multiple-input–multiple-output (MIMO) systems; stability analysis;
Journal_Title :
Systems, Man, and Cybernetics, Part B: Cybernetics, IEEE Transactions on
DOI :
10.1109/TSMCB.2011.2108283