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Event-triggering Consensus for Second-order Leader-following Multiagent Systems with Nonlinear Time-delayed Dynamics

机译:事件触发具有非线性时间延迟动态的二阶领导者的多阶领导者的共识

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摘要

This work focuses on the leader-following consensus problem for networks of dynamic agents, each of which has second-order nonlinear time-delayed dynamics. Event-triggered control and pinning control strategies are used in view of energy conservation. For each agent, the controller updates only when a properly presented event triggering condition is satisfied, which is based on the measurement errors and an exponential term. The network communication topology contains a directed spanning tree and only a fraction of follower agents can obtain the leader agent's information. By virtue of the Lyapunov-Krasovskii functional method, the M-matrix theory and some algebraic inequalities, a sufficient condition for achieving leader-following consensus is established. The Zeno-behavior of triggered time sequence is excluded whether the consensus is reached or not. Finally, a simulation example is provided to demonstrate the proposed theoretical results.
机译:这项工作侧重于对动态代理网络的领导者进行达成的共识问题,每个人都有二阶非线性时间延迟动态。 考虑到节能,使用事件触发的控制和钉扎控制策略。 对于每个代理,控制器仅在满足正确呈现的事件触发条件时更新,这是基于测量误差和指数术语。 网络通信拓扑包含定向的生成树,只有一小部分跟随者代理可以获得领导者代理的信息。 凭借Lyapunov-Krasovskii功能方法,M-矩阵理论和一些代数不等式,建立了实现领导者的足够条件。 触发时间序列的Zeno行为被排除在外是否达到共识。 最后,提供了一种模拟示例以展示所提出的理论结果。

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