复杂网络中慢速和快速系统的动力学

K. Gupta, G. Ambika
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引用次数: 1

摘要

我们研究了一个连接系统网络中具有可调谐突发频率的频率同步状态的发生。这是通过连接形成网络的非线性动力系统的时间尺度之间的相互作用实现的,在N个系统中,m个系统在较慢的时间尺度上进化。在这样的系统中,除了频率同步状态外,我们还观察到幅度死亡、同步簇和多频状态。我们报告了一个有趣的交叉行为,从快到慢的集体动力学随着慢系统的数量m的增加。详细分析了3和4个系统的最小网络结构向振幅死亡的过渡,它们实际上构成了整个网络的可能基元。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dynamics of slow and fast systems on complex networks
We study the occurrence of frequency synchronised states with tunable emergent frequencies in a network of connected systems. This is achieved by the interplay between time scales of nonlinear dynamical systems connected to form a network, where out of N systems, m evolve on a slower time scale. In such systems, in addition to frequency synchronised states, we also observe amplitude death, synchronised clusters and multifrequency states. We report an interesting cross over behaviour from fast to slow collective dynamics as the number of slow systems m increases. The transition to amplitude death is analysed in detail for minimal network configurations of 3 and 4 systems which actually form possible motifs of the full network.
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