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Coordinated Tracking Control With Asynchronous Edge-Based Event-Triggered Communications

机译:基于基于边缘的异步事件触发通信的协调跟踪控制

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This paper studies the distributed event-triggered tracking control problem of general linear multiagent systems with a dynamic leader, whose control input might be nonzero and unknown. The existence of the leader's unknown input renders the network heterogeneous and largely increases the difficulty of designing distributed event-based protocols. To solve this problem, we establish a novel asynchronous edge-based event-triggered mechanism, under which communication is not required from the leader to its out-neighbors (informed followers) or by the edge, unless the embedded triggering functions are triggered. Using this mechanism, we design a static asynchronous edge-based event-triggered protocol and an adaptive one, both of which guarantee the achievement of the leader-follower consensus and the exclusion of the Zeno behavior. Note that the adaptive event-based protocol is fully distributed, requiring no global information of the network topology, such as the network's scale, the smallest nonzero eigenvalue of the Laplacian matrix, and the upper bound of the leader's control input.
机译:本文研究了具有动态领导者的一般线性多主体系统的分布式事件触发的跟踪控制问题,该系统的控制输入可能为非零且未知。领导者未知输入的存在使网络变得异构,并大大增加了设计基于事件的分布式协议的难度。为了解决这个问题,我们建立了一种新颖的基于边缘的异步事件触发机制,在这种机制下,除非触发嵌入式触发功能,否则不需要从领导者到其邻居(通知的跟随者)或边缘进行通信。使用这种机制,我们设计了一个静态的,基于边缘的异步异步事件触发协议和一种自适应的协议,这两种协议都保证了领导者跟随者共识的达成和Zeno行为的排除。请注意,基于事件的自适应协议是完全分布式的,不需要网络拓扑的全局信息,例如网络的规模,拉普拉斯矩阵的最小非零特征值以及领导者控制输入的上限。

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