Full order dynamic output feedback ℋ∞ control design for discrete-time switched linear systems

G. S. Deaecto, J. Geromel, J. Daafouz
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引用次数: 9

Abstract

The main purpose of this paper is to design, in a discrete-time framework, a switching function together with a dynamic output feedback switched controller that render the associated closed-loop switched linear system globally asymptotically stable and impose a pre-specified upper bound to the ℒ2 gain from the exogenous input to the controlled output. Sufficient conditions for the existence of a solution are expressed in terms of Riccati-Metzler inequalities being numerically handled by means of any LMI solver coupled to a line search. Compared to the results available in the literature to date, the ones presented here lead, in general, to less conservative conditions. The paper ends with an example of practical importance consisting the control of a mass-spring system with two conflicting criteria, representing a simplified model of flexible structures.
离散时间切换线性系统的全阶动态输出反馈h∞控制设计
本文的主要目的是在离散时间框架下,设计一个开关函数和一个动态输出反馈开关控制器,使相关的闭环开关线性系统全局渐近稳定,并对外生输入到被控输出的增益施加一个预先规定的上界。解存在的充分条件用riccti - metzler不等式表示,该不等式可以用任意LMI求解器与直线搜索相耦合的方法进行数值处理。与迄今为止文献中可用的结果相比,这里提出的结果通常导致不太保守的情况。本文最后给出了一个具有实际意义的例子,该例子包括具有两个相互冲突准则的质量-弹簧系统的控制,代表了柔性结构的简化模型。
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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