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Composite nonlinear feedback control for output regulation problem of linear discrete-time systems with input saturation 被引量:2
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作者 Chongwen Wang Xing Chu Weiyao Lan 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2014年第6期1043-1055,共13页
Transient performance for output regulation problems of linear discrete-time systems with input saturation is addressed by using the composite nonlinear feedback(CNF) control technique. The regulator is designed to ... Transient performance for output regulation problems of linear discrete-time systems with input saturation is addressed by using the composite nonlinear feedback(CNF) control technique. The regulator is designed to be an additive combination of a linear regulator part and a nonlinear feedback part. The linear regulator part solves the regulation problem independently which produces a quick output response but large oscillations. The nonlinear feedback part with well-tuned parameters is introduced to improve the transient performance by smoothing the oscillatory convergence. It is shown that the introduction of the nonlinear feedback part does not change the solvability conditions of the linear discrete-time output regulation problem. The effectiveness of transient improvement is illustrated by a numeric example. 展开更多
关键词 output regulation composite nonlinear feedback in-put saturation transient performance discrete-time system
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L_1 adaptive controller of nonlinear reference system in presence of unmatched uncertainties
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作者 宋海涛 张涛 张国良 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第4期834-840,共7页
An extension of L_1 adaptive control is proposed for the unmatched uncertain nonlinear system with the nonlinear reference system that defines the performance specifications. The control law adapts fast and tracks the... An extension of L_1 adaptive control is proposed for the unmatched uncertain nonlinear system with the nonlinear reference system that defines the performance specifications. The control law adapts fast and tracks the reference system with the guaranteed robustness and transient performance in the presence of unmatched uncertainties. The interval analysis is used to build the quasi-linear parameter-varying model of unmatched nonlinear system, and the robust stability of the proposed controller is addressed by sum of squares programming. The transient performance analysis shows that within the limit of hardware a large adaption gain can improve the asymptotic tracking performance. Simulation results are provided to demonstrate the theoretical findings of the proposed controller. 展开更多
关键词 L1 adaptive controller unmatched uncertainties ROBUSTNESS transient performance
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