Robust linear controller design for discrete time systems with norm-bounded time-varying uncertainty

J. Miguchi, Hansheng Wu, K. Mizukami
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引用次数: 5

Abstract

This paper is main concerned with the problem of robust stabilization of linear discrete-time systems with norm-bounded time-varying uncertainties. For such a problem, a simple method is presented whereby some sufficient conditions are derived so that discrete-time systems remain stable in the presence of norm-bounded time-varying uncertain perturbations. Some analytic method and a discrete type of Bellman-Gronwall inequality are employed to investigate such robust stability conditions. Moreover, in the light of such robust stability conditions, we can select the parameters of a dynamical controller so that uncertain discrete-time systems are stable, which lead to a controller design procedure. Finally, a numerical example is given to demonstrate the validity of results.
具有范数有界时变不确定性的离散时间系统鲁棒线性控制器设计
本文主要研究具有范数有界时变不确定性的线性离散系统的鲁棒镇定问题。对于这类问题,给出了一种简单的方法,推导出离散系统在范数有界时变不确定扰动存在时保持稳定的充分条件。利用离散型Bellman-Gronwall不等式和一些解析方法研究了这种鲁棒稳定性条件。此外,根据这些鲁棒稳定性条件,我们可以选择动态控制器的参数,使不确定离散系统稳定,从而得到控制器的设计过程。最后通过数值算例验证了结果的有效性。
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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