Journal of Systems Engineering and Electronics
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Chongwen Wang1,*, Xing Chu2, and Weiyao Lan2
Online:
Published:
Abstract:
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.
Chongwen Wang, Xing Chu, and Weiyao Lan. Composite nonlinear feedback control for output regulation problem of linear discrete-time systems with input saturation[J]. Journal of Systems Engineering and Electronics, doi: 10.1109/JSEE.2014.00120.
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URL: https://www.jseepub.com/EN/10.1109/JSEE.2014.00120
https://www.jseepub.com/EN/Y2014/V25/I6/1043