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Cluster consensus of multi-agent systems with general linear and nonlinear dynamics via intermittent adaptive pinning control

机译:通过间歇自适应钉扎控制,多种子体系统具有一般线性和非线性动力学的多种子体系统的群集共识

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This paper investigates the cluster consensus of multi-agent systems (MASs) with general linear and nonlinear dynamics via intermittent adaptive pinning control, where each cluster has a virtual leader whose state can be sensed by only a small part of followers on some disconnected time intervals because of communication constraints. The communication topology is considered to be weakly connected, that is, it is not necessary to be in-degree balanced, strongly connected or contain a directed spanning tree. To realise the cluster consensus, a class of intermittent adaptive pinning control protocols is proposed according to difference that the agents receive information source. The pinning gains are designed to be intermittent adaptive and with an exponential convergence rate, which will effectively reduce communication costs, avoid the pinning gains being larger than those needed in practice. Meanwhile, it guarantees that the pinning gains quickly converge to steady value. Correspondingly, some sufficient consensus criteria are derived to guarantee that the agents in the same cluster asymptotically can reach consensus while the agents in different clusters can reach different consensus. Rigorous proofs are given by the aid of Lyapunov stability theory and matrix theory. Finally, a numerical simulation example is presented to validate the main results.
机译:本文通过间歇自适应钉扎控制研究了具有一般线性和非线性动力学的多智能体系统(MASs)的集群一致性,其中每个集群都有一个虚拟领导者,由于通信限制,在某些断开的时间间隔内,只有一小部分跟随者可以感知其状态。通信拓扑被认为是弱连通的,也就是说,它不必是度平衡的、强连通的或包含有向生成树。为了实现集群一致性,根据agent接收信息源的不同,提出了一类间歇自适应钉扎控制协议。钉扎增益设计为间歇性自适应,具有指数收敛速度,这将有效降低通信成本,避免钉扎增益大于实际需要的增益。同时,它保证了钉扎收益快速收敛到稳定值。相应地,我们推导出了一些充分的一致性准则,以保证同一簇中的代理渐进地达成一致,而不同簇中的代理可以达成不同的一致。借助李雅普诺夫稳定性理论和矩阵理论给出了严格的证明。最后,给出了一个数值模拟实例来验证主要结果。

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