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分数阶非线性多智能体系统的双通道事件触发渐近一致性控制

Dual Channels Event-Triggered Asymptotic Consensus Control for Fractional-Order Nonlinear Multiagent Systems.

作者信息

Liu Yang, Xie Xiangpeng, Palhares Reinaldo Martinez, Sun Jiayue

出版信息

IEEE Trans Cybern. 2024 Nov;54(11):6780-6791. doi: 10.1109/TCYB.2024.3446795. Epub 2024 Oct 30.

Abstract

This article investigates the event-triggered leaderless consensus control problem for fractional-order multiagent systems (FOMASs), where both the agent-to-agent communication channel and the controller-to-actuator communication channel are based on the events. A filter is introduced to transform the original high-order system into a first-order one, greatly simplifying the complexity of controller design compared to the traditional backstepping. Further, the convergence of filtered output signals is proved to be consistent with that of the outputs of agents themselves. Superior to the traditional event-triggered scheme, two dynamic variables are designed for the triggering conditions of the communication among agents and the controller update, respectively. Via elaborately constructing the dynamic variables, zero-error leaderless consensus can be achieved instead of only ultimately uniformly bounded result. It is proved that the proposed control strategy can guarantee better control performance of leaderless consensus under limited communication resources, and Zeno behavior is excluded. Finally, two examples are provided to verify the effectiveness of our proposed control approach.

摘要

本文研究了分数阶多智能体系统(FOMASs)的事件触发无领导者一致性控制问题,其中智能体间通信通道和控制器到执行器的通信通道均基于事件。引入一个滤波器将原高阶系统转化为一阶系统,与传统反步法相比,大大简化了控制器设计的复杂度。此外,证明了滤波后输出信号的收敛性与智能体自身输出的收敛性一致。优于传统事件触发方案的是,分别为智能体间通信和控制器更新的触发条件设计了两个动态变量。通过精心构造动态变量,可以实现零误差无领导者一致性,而不是仅得到最终一致有界的结果。证明了所提出的控制策略能够在有限通信资源下保证无领导者一致性的更好控制性能,并且排除了芝诺行为。最后,给出两个例子验证所提控制方法的有效性。

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