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Pinning Synchronization of Directed Networks With Switching Topologies: A Multiple Lyapunov Functions Approach

机译:具有交换拓扑的定向网络的固定同步:多个Lyapunov函数方法

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This paper studies the global pinning synchronization problem for a class of complex networks with switching directed topologies. The common assumption in the existing related literature that each possible network topology contains a directed spanning tree is removed in this paper. Using tools from -matrix theory and stability analysis of the switched nonlinear systems, a new kind of network topology-dependent multiple Lyapunov functions is proposed for analyzing the synchronization behavior of the whole network. It is theoretically shown that the global pinning synchronization in switched complex networks can be ensured if some nodes are appropriately pinned and the coupling is carefully selected. Interesting issues of how many and which nodes should be pinned for possibly realizing global synchronization are further addressed. Finally, some numerical simulations on coupled neural networks are provided to verify the theoretical results.
机译:本文研究了一类具有交换定向拓扑的复杂网络的全局固定同步问题。本文删除了现有相关文献中的常见假设,即每个可能的网络拓扑都包含定向生成树。利用-矩阵理论的工具,对非线性切换系统进行稳定性分析,提出了一种依赖于网络拓扑的新型Lyapunov函数,用于分析整个网络的同步行为。从理论上讲,如果适当地固定某些节点并仔细选择耦合,则可以确保交换复杂网络中的全局固定同步。进一步解决了有趣的问题,即应该固定多少个节点和哪个节点以实现全局同步。最后,在耦合神经网络上提供了一些数值模拟,以验证理论结果。

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