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Finite-time synchronization of coupled neural networks via discontinuous controllers

机译:通过不连续控制器进行耦合神经网络的有限时间同步

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摘要

This paper investigates finite-time synchronization of an array of coupled neural networks via discontinuous controllers. Based on Lyapunov function method and the discontinuous version of finite-time stability theory, some sufficient criteria for finite-time synchronization are obtained. Furthermore, we propose switched control and adaptive tuning parameter strategies in order to reduce the settling time. In addition, pinning control scheme via a single controller is also studied in this paper. With the hypothesis that the coupling network topology contains a directed spanning tree and each of the strongly connected components is detail-balanced, we prove that finite-time synchronization can be achieved via pinning control. Finally, some illustrative examples are given to show the validity of the theoretical results.
机译:本文研究了通过不连续控制器对耦合神经网络阵列进行的有限时间同步。基于李雅普诺夫函数法和有限时间稳定性理论的不连续形式,获得了一些有限时间同步的充分判据。此外,我们提出了切换控制和自适应调整参数策略,以减少建立时间。此外,本文还研究了通过单个控制器进行的销钉控制方案。假设耦合网络拓扑包含有向生成树,并且每个强连接的组件都是细节平衡的,那么我们证明可以通过钉扎控制来实现有限时间同步。最后,通过一些例子说明了理论结果的正确性。

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