State feedback gain scheduling for linear systems with time-varying parameters

V. Montagner, P. Peres
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引用次数: 36

Abstract

This paper addresses the problem of parameter dependent state feedback control (i.e. gain scheduling) for linear systems with parameters that are assumed to be measurable in real time and are allowed to vary in a compact polytopic set with bounded variation rates. A new sufficient condition given in terms of linear matrix inequalities permits to determine the controller gain as a function of the time-varying parameters and of a set of constant matrices. The closed-loop stability is assured by means of a parameter dependent Lyapunov function. The condition proposed encompasses the well known quadratic stabilizability condition and allows to impose structural constraints such as decentralization to the feedback gains. Numerical examples illustrate the efficiency of the technique.
时变参数线性系统的状态反馈增益调度
本文研究了线性系统的参数依赖状态反馈控制(即增益调度)问题,该线性系统的参数被假设为实时可测量的,并且允许在一个紧致多面体集中以有界变化率变化。用线性矩阵不等式给出了一个新的充分条件,可以确定控制器增益作为时变参数和一组常数矩阵的函数。通过参数相关的李雅普诺夫函数来保证闭环的稳定性。所提出的条件包含了众所周知的二次稳定性条件,并允许对反馈增益施加结构约束,例如去中心化。数值算例说明了该方法的有效性。
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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