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Pinning exponential synchronization of complex networks via event-triggered communication with combinational measurements

机译:通过事件触发的通信和组合测量来固定复杂网络的指数同步

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摘要

In this paper, we consider the pinning exponential synchronization of complex networks via event-triggered communication. By using the combinational measurements, two classes of event triggers are designed, one depends on continuous communications between the agents, the other avoids the continuous communications. The controller updates when triggering function reaches certain threshold. For such classes of two event triggers, the exponential synchronization as well as the convergence rate of the controlled complex networks are studied, respectively, by employing the M-matrix theory, algebraic graph theory and the Lyapunov method. Two simulation examples are provided to illustrate the effectiveness of the proposed two classes of event triggering strategies. It is noteworthy that the event trigger with combinational measurements avoids decoupling the actual state of the nodes, which is more effective than the error-based event trigger.
机译:在本文中,我们考虑了通过事件触发的通信进行复杂网络的固定指数同步。通过使用组合度量,设计了两类事件触发器,一类依赖于代理之间的连续通信,另一类避免了连续通信。触发功能达到一定阈值时,控制器进行更新。对于此类两类事件触发器,分别采用M矩阵理论,代数图论和Lyapunov方法研究了受控复杂网络的指数同步以及收敛速度。提供了两个仿真示例,以说明所提出的两类事件触发策略的有效性。值得注意的是,具有组合测量的事件触发器可避免去耦节点的实际状态,这比基于错误的事件触发器更有效。

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