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Consensus of second-order multi-agent systems with delayed nonlinear dynamics and intermittent communications

机译:具有延迟非线性动力学和间歇通信的二阶多智能体系统的共识

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摘要

This article investigates the second-order consensus problem of multi-agent systems with inherent delayed nonlinear dynamics and intermittent communications. Each agent is assumed to obtain the measurements of relative states between its own and the neighbours' only at a sequence of disconnected time intervals. A new kind of protocol based only on the intermittent measurements of neighbouring agents is proposed to guarantee the states of agents to reach second-order consensus under a fixed strongly connected and balanced topology. By constructing a common Lyapunov function, it is shown that consensus can be reached if the general algebraic connectivity and communication time duration are larger than their corresponding threshold values, respectively. Finally, simulation examples are provided to verify the effectiveness of the theoretical analysis.
机译:本文研究了具有固有延迟非线性动力学和间歇通信的多智能体系统的二阶共识问题。假定每个代理仅在不连续的时间间隔序列中获得其自身与邻居之间的相对状态的度量。提出了一种仅基于相邻代理的间歇性测量的新型协议,以保证代理的状态在固定的强连接且平衡的拓扑结构下达到二阶共识。通过构造一个公共的Lyapunov函数,表明如果通用代数连通性和通信持续时间分别大于其相应的阈值,则可以达成共识。最后,通过仿真实例验证了理论分析的有效性。

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  • 作者

    Wen G; Duan Z; Yu W; Chen G;

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  • 年度 2013
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