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Outer synchronization between two hybrid-coupled delayed dynamical networks via aperiodically adaptive intermittent pinning control

机译:通过非周期性自适应间歇钉扎控制实现两个混合耦合时滞动力网络之间的外部同步

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摘要

This article is concerned with the problem of pinning outer synchronization between two complex delayed dynamical networks via adaptive intermittent control. At first, a general model of hybrid-coupled dynamical network with time-varying internal delay and time-varying coupling delay is given. Then, an aperiodically adaptive intermittent pinning-control strategy is introduced to drive two such delayed dynamical networks to achieve outer synchronization. Some sufficient conditions to guarantee global outer-synchronization are derived by constructing a novel piecewise Lyapunov function and utilizing stability analytical method. Moreover, a simple pinned-node selection scheme determining what kinds of nodes should be pinned first is provided. It is noted that the adaptive pinning control type is aperiodically intermittent, where both control period and control width are non-fixed. Finally, a numerical example is given to illustrate the validity of the theoretical results. (c) 2016 Wiley Periodicals, Inc. Complexity 21: 593-605, 2016
机译:本文涉及通过自适应间歇控制在两个复杂的延迟动态网络之间固定外部同步的问题。首先,给出了具有时变内部延迟和时变耦合延迟的混合耦合动力网络的一般模型。然后,引入了一种非周期性自适应的间歇式钉扎控制策略,以驱动两个这样的延迟动态网络来实现外部同步。通过构造新颖的分段Lyapunov函数并利用稳定性分析方法,得出了保证全局外部同步的一些充分条件。此外,提供了一种简单的固定节点选择方案,该方案确定首先应固定哪些类型的节点。注意,自适应钉扎控制类型是非周期性的,其中控制周期和控制宽度都不固定。最后,通过数值例子说明了理论结果的正确性。 (c)2016 Wiley Periodicals,Inc.复杂度21:593-605,2016

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