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Pinning synchronisation in fixed and switching directed networks of Lorenz-type nodes

机译:Lorenz型节点的固定和交换定向网络中的固定同步

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This study addresses the global pinning synchronisation of directed networks with Lorenz-type node dynamics. By using tools from M-matrix theory and Lyapunov stability theory, the interesting issues of what kind of nodes should be pinned and how large the control strength between neighbouring nodes should be selected for achieving global synchronisation in both fixed and switching networks are clearly addressed. It is theoretically shown that global pinning synchronisation of an arbitrarily given fixed network can be achieved if the network topology contains a directed spanning tree and the coupling strength is larger than a derived critical value depending both on the node dynamics and the network topology. By suitably constructing multiple Lyapunov functions, it is further proved that global pinning synchronisation in switching networks with a suitable coupling strength can be guaranteed if each possible network topology contains a directed spanning tree and the dwell time of switching is less than a positive threshold. Numerical examples are finally given for illustration.
机译:这项研究解决了具有Lorenz型节点动力学的有向网络的全局固定同步。通过使用M-matrix理论和Lyapunov稳定性理论的工具,可以解决固定节点和交换网络中要实现全局同步的有趣问题,即应该固定哪种节点以及相邻节点之间的控制强度应选择多大。从理论上讲,如果网络拓扑包含有向生成树并且耦合强度大于导出的临界值(取决于节点动态和网络拓扑),则可以实现任意给定的固定网络的全局固定同步。通过适当构造多个Lyapunov函数,进一步证明,如果每种可能的网络拓扑都包含有向生成树并且交换的驻留时间小于正阈值,则可以确保具有适当耦合强度的交换网络中的全局固定同步。最后给出数字示例以进行说明。

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