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首页> 外文期刊>International Journal of Control, Automation, and Systems >H{sub}∞ Control for a Class of Singularly Perturbed Nonlinear Systems via Successive Galerkin Approximation
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H{sub}∞ Control for a Class of Singularly Perturbed Nonlinear Systems via Successive Galerkin Approximation

机译:一类奇异摄动非线性系统的H {sub}∞控制,通过逐次Galerkin逼近

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This paper presents a new algorithm for the closed-loop H{sub}∞ control of a class of singularly perturbed nonlinear systems with an exogenous disturbance, using the successive Galerkin approximation (SGA). The singularly perturbed nonlinear system is decomposed into two subsystems of a slow-time scale and a fast-time scale in the spirit of the general theory of singular perturbation. Two H{sub}∞ control laws are obtained to each subsystem by using the SGA method. The composite control law that consists of two H{sub}∞ control laws of each subsystem is designed. One of the purposes of this paper is to design the closed-loop H{sub}∞ composite control law for the singularly perturbed nonlinear systems via the SGA method. The other is to reduce the computational complexity when the SGA method is applied to the high order systems.
机译:本文提出了一种新的算法,该算法使用逐次Galerkin逼近(SGA)来控制一类具有外源扰动的奇摄动非线性系统的H {sub}∞。根据奇异摄动的一般理论,将奇摄动非线性系统分解为慢时标度和快速时标两个子系统。使用SGA方法为每个子系统获得两个H {sub}∞控制律。设计了由每个子系统的两个H {sub}∞控制律组成的复合控制律。本文的目的之一是通过SGA方法设计奇异摄动非线性系统的闭环H {sub}∞复合控制律。另一个是在将SGA方法应用于高阶系统时降低计算复杂度。

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