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Synchronization of linear dynamical networks on time scales: Pinning control via delayed impulses

机译:线性动态网络在时标上的同步:通过延迟脉冲进行定位控制

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This paper studies the synchronization problem of complex dynamical networks (CDNs) on time scales. A pinning impulsive control scheme that takes into account of time-delay effects is designed to achieve synchronization of CDNs on time scales with the state of an isolated node. Based on the theory of time scales and the direct Lyapunov method, a synchronization criterion is established for linear CDNs on general time scales. Our result shows that, by impulsive control a small portion of nodes, the consensus of CDNs on time scales can be achieved. According to our pinning impulsive control scheme, different numbers of nodes will be selected at each impulsive instant and time delay is considered in the pinning impulses. The modeling framework developed in this paper is a unification and generalization of many existing continuous-time and discrete-time CDN models, while the pinning impulsive control scheme is an extension of the existing control scheme for synchronization of continuous-time CDNs. Moreover, the idea of studying dynamical systems on time scales provide a unified approach to investigate continuous time system and its discrete-time counterpart simultaneously. Numerical simulations are given to illustrate the effectiveness of the theoretical analysis. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文研究了时标上的复杂动态网络(CDN)的同步问题。考虑到时延效应的钉扎脉冲控制方案旨在实现CDN在时间尺度上与隔离节点的状态同步。基于时标理论和直接Lyapunov方法,建立了一般时标上线性CDN的同步准则。我们的结果表明,通过脉冲控制一小部分节点,可以实现CDN在时间尺度上的共识。根据我们的钉扎脉冲控制方案,将在每个脉冲瞬间选择不同数量的节点,并在钉扎脉冲中考虑时间延迟。本文开发的建模框架是对许多现有连续时间和离散时间CDN模型的统一和概括,而钉扎脉冲控制方案是对连续时间CDN同步的现有控制方案的扩展。此外,在时间尺度上研究动力系统的思想为统一研究连续时间系统及其离散时间对应物提供了统一的方法。数值模拟表明了理论分析的有效性。 (C)2016 Elsevier Ltd.保留所有权利。

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