Event-triggered leader-follower tracking control for interconnected systems with undirected communication graphs

Yi Cheng, V. Ugrinovskii
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引用次数: 3

Abstract

This paper considers the event-triggered leader-follower tracking control for interconnected systems. Unlike the large body of existing work, here we consider systems which are physically coupled with uncertain norm-bounded coupling between the subsystems. We propose a model based event-triggered tracking control strategy and an event triggering rule with a time-dependent threshold which guarantees that the tracking errors in the systems asymptotically converge to zero. With the proposed event triggering rule, we prove that the systems do not exhibit Zeno behavior. In addition, the proposed event-triggered tracking control strategy is also employed to decoupled multi-agent systems. The efficacy of the proposed method is discussed using a simulation example.
具有无向通信图的互联系统的事件触发领导-随从跟踪控制
研究了事件触发的互联系统的leader-follower跟踪控制。与现有的大量工作不同,这里我们考虑子系统之间具有不确定范数有界耦合的物理耦合系统。提出了一种基于模型的事件触发跟踪控制策略和一种具有时变阈值的事件触发规则,以保证系统的跟踪误差渐近收敛于零。利用所提出的事件触发规则,我们证明了系统不表现出芝诺行为。此外,所提出的事件触发跟踪控制策略也被用于解耦的多智能体系统。通过一个仿真算例,讨论了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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