基于区间观测器的开关系统事件触发 H∞ 控制

Chuanjing Wu, Yue-E. Wang, Di Wu
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摘要

本文研究了基于区间观测器的事件触发 [公式:见正文] 控制器的设计,适用于具有频繁异步性的开关系统。我们首先提出了一种基于区间观测器的事件触发机制,用于传输观测器状态和激活模式信息,以便更新控制器。然后,我们为所考虑的系统设计了一种基于区间观测器的事件触发 [公式:见正文] 控制器。通过使用与控制器模式相关的 Lyapunov 函数方法,我们得到了在平均停留时间切换规律下闭环切换系统全局指数稳定性的充分条件。此外,我们还证明了事件间期长度是一个正常数,这可以排除芝诺行为。与文献相比,本文取消了两个事件触发时刻之间最多切换一次的严格要求,即允许在事件间歇内频繁切换。最后,本文给出了一个数值示例来验证所提方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Event-triggered H∞ control for switched systems based on interval observer
The paper studies the design of interval observer–based event-triggered [Formula: see text] controller for switched systems with frequent asynchronism. We first propose an interval observer–based event-triggered mechanism, which is used to transmit the observer states and the activated mode information for controller updating. Then, we design an interval observer–based event-triggered [Formula: see text] controller for the considered systems. By using the controller mode–dependent Lyapunov function method, sufficient conditions for the globally exponential stability of the closed-loop switched systems are obtained under average dwell time switching law. Moreover, we prove that the interevent interval length is a positive constant, which can exclude the Zeno behavior. Compared with the literature, the paper removes the strict requirement of at most one switch between two event-triggered instants, that is, frequent switches within an interevent interval are allowed. Finally, a numerical example is given to verify the effectiveness of the proposed method.
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