On the Delay Bounds of Discrete-time Linear Systems under Delay Independent Truncated Predictor Feedback

被引:0
|
作者
Wei, Yusheng [1 ]
Lin, Zongli [1 ]
机构
[1] Univ Virginia, Charles L Brown Dept Elect & Comp Engn, Charlottesville, VA 22904 USA
基金
美国国家科学基金会;
关键词
Time delay; low gain feedback; stabilization; truncated predictor feedback; GLOBAL ASYMPTOTIC STABILIZATION; STABILIZABILITY; STABILITY;
D O I
暂无
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
Predictor state feedback law achieves stabilization for a discrete-time linear system with input delay by making the closed-loop system free of delay. It is known that the predictor feedback law disposed of the term corresponding to the zero state solution in the state predictor, which is referred to as truncated predictor feedback (TPF), can be designed using low gain feedback technique to stabilize a system that is not exponentially unstable for an arbitrarily large delay. Moreover, when the transition matrix in the truncated predictor feedback is removed, a delay independent TPF law is formulated, and has the ability to stabilize a system for an arbitrarily large delay if all open loop poles of the system are inside the unit circle or at z = 1. This paper first proposes an example to show that a delay independent TPF law is practically not able to achieve stabilization for a sufficiently large delay if the system is not exponentially unstable but has at least one pole on the unit circle at z not equal 1. We then determine a delay bound and the values of the low gain parameter that guarantee the asymptotic stability of the closed-loop system. Generalization of the results to the exponentially unstable system is also considered.
引用
收藏
页码:89 / 94
页数:6
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