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Event-triggered synchronization for second-order nodes in complex dynamical network with time-varying coupling matrices

机译:具有时变耦合矩阵的复杂动态网络中的二阶节点的事件触发同步

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摘要

The synchronization of second-order systems in complex dynamical networks (CDNs) with time-varying coupling matrices is investigated in this paper. By using the matrix inequalities, event-triggered scheme and graph theory, one important sufficient condition is obtained to ensure that the above-mentioned CDNs can achieve the exponential synchronization under the cooperatively directed spanning tree topology. Meanwhile, the specific Lyapunov stability analysis method is given. In addition, continuous communication is avoided through introducing an event-triggered scheme, so that the energy consumption and communication load are decreased. The Zeno behavior is excluded by applying the right upper Dini derivative, which avoid infinite triggers. At last, the effectiveness of the reported exponential synchronization condition is verified through simulation examples.
机译:本文研究了具有时变耦合矩阵的复杂动态网络(CDN)中的二阶系统的同步。 通过使用矩阵不等式,事件触发方案和图论,获得一个重要的充分条件以确保上述CDN可以在协同指导的生成树拓扑下实现指数同步。 同时,给出了特定的Lyapunov稳定性分析方法。 另外,通过引入事件触发方案来避免连续通信,从而降低了能量消耗和通信负载。 ZENO行为是通过应用右上级DINI衍生物而排除,避免无限触发器。 最后,通过仿真示例验证了报告的指数同步条件的有效性。

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