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Consensus analysis of multiagent systems with second-order nonlinear dynamics and general directed topology: An event-triggered scheme

机译:具有二阶非线性动力学和一般有向拓扑的多主体系统的共识分析:一种事件触发方案

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Event-triggered sampling control is motivated by the application of embedded microprocessors equipped in the agents with limited computation and storage resources. This paper studies the global consensus in second-order multi-agent systems with the inherent non-linear dynamics on general directed networks using decentralized event-triggered strategy. For each agent, only utilizing local and current sampling data, the update of controllers is event-based and only triggered at their own event times. A high-performance sampling event that only needs neighbors' states at their own discrete time instants is presented. Furthermore, we introduce two kinds of general algebraic connectivity for strongly connected networks and strongly connected components of directed networks containing a spanning tree to describe the system's ability to reach consensus. A detailed theoretical analysis on consensus is performed and two criteria are derived by the virtues of algebraic graph theory, matrix theory, and Lyapunov control approach. It is shown that the continuous communication between neighboring agents can be avoided and the Zeno-behavior of triggered time sequence is excluded during the system's whole working process. In addition, numerical simulation is given to illustrate the effectiveness of the theoretical results. (C) 2016 Elsevier Inc. All rights reserved.
机译:事件触发的采样控制是由代理中配备的嵌入式微处理器的应用推动的,这些代理的计算和存储资源有限。本文利用分散的事件触发策略研究了具有通用非线性网络固有的非线性动力学的二阶多智能体系统的全局共识。对于每个代理,仅利用本地和当前采样数据,控制器的更新是基于事件的,并且仅在其自己的事件时间触发。提出了一种高性能采样事件,该事件仅需要邻居在其自己的离散时刻的状态。此外,我们介绍了强连接网络和包含生成树的定向网络的强连接组件的两种通用代数连接,以描述系统达成共识的能力。进行了关于共识的详细理论分析,并借助代数图论,矩阵论和Lyapunov控制方法得出了两个标准。结果表明,在系统的整个工作过程中,可以避免相邻代理之间的连续通信,并且排除了触发时序的芝诺行为。另外,通过数值模拟说明了理论结果的有效性。 (C)2016 Elsevier Inc.保留所有权利。

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