时滞非线性控制系统的改进设计

Awatef K. Ali, M. Mahmoud
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引用次数: 0

摘要

众所周知,非线性控制系统中的时滞会导致闭环系统的劣化甚至失稳。因此,对于存在时滞的非线性控制系统,需要发展具体的分析技术和设计方法。本章旨在对非线性时滞系统的稳定性和控制进行概述。首先,给出了研究时滞系统的一些动机,并对时滞系统的研究进行了综述。然后,简要概述了一些控制方法,特别是针对高阶多项式不确定性非线性时滞系统和具有非线性输入的非线性时滞系统的Lyapunov-Krasoviskii泛函方法,针对三角形结构非线性时滞系统的Lyapunov-Razumikhin方法,针对全状态时滞系统的动态增益控制。最后,给出了该方法在化学反应器系统中的应用,并讨论了一些有待解决的问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improved Design of Nonlinear Control Systems with Time Delay
It is well known that time delay in nonlinear control systems may lead to the deterioration or even destabilization of the closed-loop systems. Therefore, specific analysis techniques and design methods are needed to be developed for nonlinear control systems in the presence of time delay. This chapter aims to give a broad overview of the stability and control of nonlinear time-delay systems. Firstly, we present some motivations and a comprehensive survey for the study of time-delay systems. Then, a brief overview of some control approaches is provided, specifically, the Lyapunov-Krasoviskii functional method for high-order polynomial uncertainties nonlinear time-delay systems, and nonlinear time-delay systems with nonlinear input, the Lyapunov-Razumikhin method for triangular structure nonlinear time-delay systems, dynamic gain control for full state time-delay systems. Finally, an application in chemical reactor systems is provided and some related open problems are discussed.
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