具有间歇事件触发控制的复杂网络的有限时间同步

Rongqiang Tang, Xinsong Yang
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引用次数: 1

摘要

本次会议的重点是通过设计一个间歇事件触发控制复杂网络(CNs)的有限时间同步(FtSyn)。首先,提出了一种改进的具有系统状态间歇发散的有限时间稳定性,它不要求所有的收敛和发散区间都是周期且成比例大于1。然后,借助于多重Lyapunov函数和凸组合技术,得到了保证神经网络的FtSyn的充分条件,并将其表述为一组线性矩阵不等式。最后,以蔡氏系统为例,给出了所提理论的数值应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Finite-time Synchronization of Complex Networks with Intermittent Event-Triggered Control
This conference focuses on finite-time synchronization (FtSyn) of complex networks(CNs) by designing an intermittent event-triggered control. First, an improved finite-time stability with intermittent divergence of system’s state is provided, which does not demand all the intervals of convergence and divergence are periodic and proportional to greater than 1. Then, with the aid of multiple Lyapunov functions and convex combination techniques, sufficient conditions ensuring FtSyn of CNs are obtained, which are formulated by a set of linear matrix inequalities. Finally, a numerical application of the suggested theories to Chua’s system is offered to illustrate their usefulness.
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