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Time-varying multiplex network: Intralayer and interlayer synchronization

机译:时变多路复用网络:intoralAlay和中间层同步

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A large class of engineered and natural systems, ranging from transportation networks to neuronal networks, are best represented by multiplex network architectures, namely a network composed of two or more different layers where the mutual interaction in each layer may differ from other layers. Here we consider a multiplex network where the intralayer coupling interactions are switched stochastically with a characteristic frequency. We explore the intralayer and interlayer synchronization of such a time-varying multiplex network. We find that the analytically derived necessary condition for intralayer and interlayer synchronization, obtained by the master stability function approach, is in excellent agreement with our numerical results. Interestingly, we clearly find that the higher frequency of switching links in the layers enhances both intralayer and interlayer synchrony, yielding larger windows of synchronization. Further, we quantify the resilience of synchronous states against random perturbations, using a global stability measure based on the concept of basin stability, and this reveals that intralayer coupling strength is most crucial for determining both intralayer and interlayer synchrony. Lastly, we investigate the robustness of interlayer synchronization against a progressive demultiplexing of the multiplex structure, and we find that for rapid switching of intralayer links, the interlayer synchronization persists even when a large number of interlayer nodes are disconnected.
机译:从运输网络到神经网络的一大类工程和自然系统,是由多路复用网络架构所代表的最佳,即由两个或多个不同层组成的网络,其中每个层中的相互相互作用可能与其他层不同。在这里,我们考虑用特征频率随机切换的多路复用网络。我们探索了这种时变多路复用网络的内窥镜和层间同步。我们发现,通过主稳定功能方法获得的分析导出的intralAlay和中间层同步条件与我们的数值结果非常吻合。有趣的是,我们清楚地发现,图层中的开关链路的频率越高,介于内部内和层间同步,产生更大的同步窗口。此外,我们使用基于盆地稳定性概念的全局稳定度量来量化同步状态对随机扰动的恢复性,这表明,伏特拉内偶联强度最重要的是,用于确定腔内和层间同步。最后,我们研究了中间层同步对多路复用结构的逐步解复用的鲁棒性,并且我们发现,对于intoralAlay链路的快速切换,即使断开大量中间节点时,中间间同步也持续存在。

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