随机动态网络同步的脉冲控制

Jianquan Lu, J. Kurths, Nariman Mahdavi, Jinde Cao
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引用次数: 2

摘要

动态网络中的同步通常是通过节点间的信息交换来实现的,这使得最终的同步状态难以预测。研究了存在布朗运动噪声的复杂动态网络的镇定问题。钉住状态反馈控制器对于具有状态耦合的复杂动态网络的稳定是有效的。尽管状态耦合和脉冲控制器属于不同类型的控制器,但我们证明了钉住脉冲控制器对于具有状态耦合的动态网络的镇定也是有效的。提出了在每个脉冲常数处选择控制节点的算法。消去了脉冲区间上下边界的约束,使得结果的保守性大大降低。数值模拟验证了理论结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impulsive control for the synchronization of stochastic dynamical networks
Synchronization in dynamical networks is normally realized via the information exchanging along the interconnections of the nodes, and it makes the final synchronous state difficult to predict. This paper is devoted to studying the stabilization problem for complex dynamical networks in the presence of Brownian motion noise. Pinning state feedback controllers have been proved to be effective for the stabilization of complex dynamical networks with state-coupling. In this paper, we show that pinning impulsive controllers are also effective for the stabilization of dynamical networks with state-coupling, although state-coupling and impulsive controllers belong to different kinds of controllers. An algorithm is presented to select the nodes which should be controlled at each impulsive constants. The constraints on the lower and upper bounds of the impulsive interval are removed, which makes the results much less conservative. Numerical simulations are also given to demonstrate the theoretical results.
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