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具有耦合延迟的逻辑斯谛映射网络中同步区域的分岔行为

Bifurcation behaviors of synchronized regions in logistic map networks with coupling delay.

作者信息

Tang Longkun, Wu Xiaoqun, Lü Jinhu, Lu Jun-An

机构信息

School of Mathematical Science, Huaqiao University, Quanzhou 362021, China.

School of Mathematics and Statistics, Wuhan University, Wuhan 430072, China.

出版信息

Chaos. 2015 Mar;25(3):033101. doi: 10.1063/1.4913854.

Abstract

Network synchronized regions play an extremely important role in network synchronization according to the master stability function framework. This paper focuses on network synchronous state stability via studying the effects of nodal dynamics, coupling delay, and coupling way on synchronized regions in Logistic map networks. Theoretical and numerical investigations show that (1) network synchronization is closely associated with its nodal dynamics. Particularly, the synchronized region bifurcation points through which the synchronized region switches from one type to another are in good agreement with those of the uncoupled node system, and chaotic nodal dynamics can greatly impede network synchronization. (2) The coupling delay generally impairs the synchronizability of Logistic map networks, which is also dominated by the parity of delay for some nodal parameters. (3) A simple nonlinear coupling facilitates network synchronization more than the linear one does. The results found in this paper will help to intensify our understanding for the synchronous state stability in discrete-time networks with coupling delay.

摘要

根据主稳定性函数框架,网络同步区域在网络同步中起着极其重要的作用。本文通过研究节点动力学、耦合延迟和耦合方式对逻辑斯谛映射网络中同步区域的影响,聚焦于网络同步状态稳定性。理论和数值研究表明:(1)网络同步与其节点动力学密切相关。特别是,同步区域从一种类型转换到另一种类型的同步区域分岔点与非耦合节点系统的分岔点高度一致,并且混沌节点动力学能够极大地阻碍网络同步。(2)耦合延迟通常会削弱逻辑斯谛映射网络的同步能力,对于某些节点参数,它还受延迟奇偶性的支配。(3)简单的非线性耦合比线性耦合更有利于网络同步。本文的研究结果将有助于加深我们对具有耦合延迟的离散时间网络中同步状态稳定性的理解。

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