State-Feedback Stabilization of Discrete-Time Switched Linear Systems With Improved PDT Constraints

Yanzheng Zhu, W. Zheng
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Abstract

This paper is concerned with the issues of stability analysis and state-feedback stabilization control design for a class of discrete-time switched linear systems. Other than the existing studies on the persistent dwell time (PDT) switching signals, the average dwell time (ADT) switching property is considered together with the PDT switching constraint here to eliminate the restriction of dwell time requirements and to lift the flexibility of PDT switching signals design. By virtue of the semi-time-varying (STV) Lyapunov function approach, the stability criteria are derived for the considered system. Then sufficient conditions on the solvability of stabilizing controllers in STV form are obtained, and the corresponding controller gains are calculated by solving a cluster of linear matrix inequalities. Finally, the advantage of the developed theoretical results is illustrated via a numerical example.
具有改进PDT约束的离散时间切换线性系统的状态反馈镇定
研究了一类离散时间切换线性系统的稳定性分析和状态反馈镇定控制设计问题。与已有的关于持续停留时间(PDT)开关信号的研究不同,本文将平均停留时间(ADT)开关特性与PDT开关约束结合考虑,消除了停留时间要求的限制,提高了PDT开关信号设计的灵活性。利用半时变Lyapunov函数方法,导出了所考虑系统的稳定性判据。然后,通过求解一组线性矩阵不等式,得到了稳定控制器在STV形式下的可解性的充分条件,并计算了相应的控制器增益。最后,通过数值算例说明了所得理论结果的优越性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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