网络控制系统的马尔可夫执行器分配

G. Guo, Zibao Lu
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引用次数: 16

摘要

本文研究了在任意时刻为执行控制任务而激活的执行器数量有限的控制系统。执行器的激活状态根据随机事件(由马尔可夫链建模)进行分配。那么在什么情况下系统是稳定的,如何设计一个控制器来满足一定的性能要求?通过考虑控制信号中的马尔可夫链和传输延迟,我们建立了一种新的稳定性分析和控制器综合框架。针对不确定线性系统,给出了一种易于测试的模态和时延相关控制器设计方法。算例表明了该方法的优越性和实用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Markov Actuator Assignment for Networked Control Systems
This paper investigates control systems in which the number of actuators activated for performing control task at any time is limited. The activation status of the actuators is assigned in accordance to a random event (modeled by a Markov chain). Then under what condition is the system stable and how to design a controller to meet certain performance requirement? By taking into account the Markov chain and the transmission delay in the control signal, we establish a novel framework for stability analysis and controller synthesis. Specifically, a easily testable mode- and delay-dependent controller design method is given for uncertain linear systems. A numerical example is provided to show the advantage and usefulness of the proposed method.
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