DocumentCode :
1240153
Title :
Intelligent robust control for uncertain nonlinear time-varying systems and its application to robotic systems
Author :
Chang, Yeong-Chan
Author_Institution :
Dept. of Electr. Eng., Kun-Shan Univ. of Technol., Tainan Hsien, Taiwan
Volume :
35
Issue :
6
fYear :
2005
Firstpage :
1108
Lastpage :
1119
Abstract :
This paper addresses the problem of designing adaptive fuzzy-based (or neural network-based) robust controls for a large class of uncertain nonlinear time-varying systems. This class of systems can be perturbed by plant uncertainties, unmodeled perturbations, and external disturbances. Nonlinear H control technique incorporated with adaptive control technique and VSC technique is employed to construct the intelligent robust stabilization controller such that an H control is achieved. The problem of the robust tracking control design for uncertain robotic systems is employed to demonstrate the effectiveness of the developed robust stabilization control scheme. Therefore, an intelligent robust tracking controller for uncertain robotic systems in the presence of high-degree uncertainties can easily be implemented. Its solution requires only to solve a linear algebraic matrix inequality and a satisfactorily transient and asymptotical tracking performance is guaranteed. A simulation example is made to confirm the performance of the developed control algorithms.
Keywords :
H/sup /spl infin// control; adaptive control; control system synthesis; fuzzy control; intelligent control; linear matrix inequalities; neurocontrollers; nonlinear control systems; robots; robust control; time-varying systems; tracking; uncertain systems; VSC technique; adaptive fuzzy-based robust control; adaptive neural network-based robust control; external disturbances; intelligent robust stabilization controller; intelligent robust tracking controller design; linear algebraic matrix inequality; nonlinear H/sup /spl infin// control technique; plant uncertainties; uncertain nonlinear time-varying systems; uncertain robotic systems; unmodeled perturbations; Adaptive control; Control design; Control systems; Intelligent control; Intelligent robots; Neural networks; Programmable control; Robust control; Time varying systems; Uncertainty; Adaptive fuzzy control; adaptive neural network control; hybrid robust-adaptive controller; intelligent robust control; nonlinear; robotic systems; uncertain nonlinear time-varying systems; Algorithms; Artificial Intelligence; Computer Simulation; Cybernetics; Feedback; Fuzzy Logic; Models, Statistical; Nonlinear Dynamics; Robotics; Time Factors;
fLanguage :
English
Journal_Title :
Systems, Man, and Cybernetics, Part B: Cybernetics, IEEE Transactions on
Publisher :
ieee
ISSN :
1083-4419
Type :
jour
DOI :
10.1109/TSMCB.2005.850149
Filename :
1542258
Link To Document :
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