H/sub /spl infin// control for linear systems with controller uncertainty

Guanghong Yang, J. Wang, Chong Lin
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引用次数: 10

Abstract

The paper is concerned with the problem of linear H/sub /spl infin// controller design for linear time-invariant systems, in the presence of controller uncertainty. The controller to be designed is assumed to have time-varying, but norm-bounded additive uncertainties. Design methods are presented for both state feedback and dynamic output (measurement) feedback, both of which degenerate to the standard H/sub /spl infin// state and output feedback control designs, respectively, when the controller uncertainties become zero. The designed controller with uncertainty is such that the closed-loop system is quadratically stable and has an H/sub /spl infin// disturbance attenuation bound. The existence of a solution to the standard H/sub /spl infin// control problem guarantees the existence of such H/sub /spl infin// controllers with a certain level of controller uncertainities. The generalization to an uncertain plant is also considered. Numerical examples are given to illustrate the design procedures and their effectiveness.
具有控制器不确定性的线性系统的H/sub /spl / in//控制
研究存在控制器不确定性的线性定常系统的H/sub /spl / in//控制器设计问题。要设计的控制器被假定具有时变的,但范数有界的加性不确定性。提出了状态反馈和动态输出(测量)反馈的设计方法,当控制器不确定性为零时,两者分别退化为标准的H/sub /spl / in//状态和输出反馈控制设计。所设计的不确定性控制器使闭环系统具有二次稳定,并具有H/sub /spl内/扰动衰减界。标准H/sub /spl infin//控制问题解的存在性保证了具有一定控制器不确定性的H/sub /spl infin//控制器的存在性。同时考虑了对不确定对象的推广。数值算例说明了设计方法及其有效性。
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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