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Synchronization in Networks of Linearly Coupled Dynamical Systems via Event-Triggered Diffusions

机译:基于事件触发的扩散的线性耦合动力系统网络同步

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In this paper, we utilize event-triggered coupling configurations to realize synchronization of linearly coupled dynamical systems. Here, the diffusion couplings are set up from the latest observations of the nodes and their neighborhood and the next observation time is triggered by the proposed criteria based on the local neighborhood information as well. Two scenarios are considered: 1) continuous monitoring, in which each node can observe its neighborhood’s instantaneous states and 2) discrete monitoring, in which each node can obtain only its neighborhood’s states at the same time point when the coupling term is triggered. In both the cases, we prove that if the system with persistent coupling can synchronize, then these event-triggered coupling strategies can synchronize the system too.
机译:在本文中,我们利用事件触发的耦合配置来实现线性耦合动力系统的同步。在这里,扩散耦合是根据节点及其附近的最新观测值建立的,下一个观测时间也由基于本地邻域信息的建议标准触发。考虑了两种情况:1)连续监视,其中每个节点可以观察其邻域的瞬时状态; 2)离散监视,其中每个节点在触发耦合项时,只能在同一时间点仅获得其邻域的状态。在这两种情况下,我们都证明,如果具有持久耦合的系统可以同步,那么这些事件触发的耦合策略也可以使系统同步。

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