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首页> 外文期刊>Discrete dynamics in nature and society >Pinning Controllability Scheme of Directed Complex Delayed Dynamical Networks via Periodically Intermittent Control
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Pinning Controllability Scheme of Directed Complex Delayed Dynamical Networks via Periodically Intermittent Control

机译:定期间歇控制定向复杂延迟动态网络的固定控制性方案

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摘要

This paper studies the pinning controllability of directed complex delayed dynamical networks by using periodic intermittent control scheme. The general and low-dimensional pinning synchronization criteria are derived to illustrate the design of periodic intermittent control scheme. According to our low-dimensional pinning criterion, especially, the constraint condition of coupling strength is obtained when the network structure and amounts of pinned nodes are fixed. An algorithm is presented to determine the amounts of periodically intermittent controllers and locate these intermittent controllers in a directed network, in which the significance of nodes out- (in-) degree in pinning control of complex network is also illustrated. Finally, a directed network consisting of 12 coupled delayed Chua oscillators is designed as numerical example to verify the effectiveness of the theoretical analysis.
机译:本文通过使用周期性间歇控制方案研究指向复杂延迟动态网络的钉扎可控性。 导出一般和低维固定同步标准以说明周期性间歇控制方案的设计。 根据我们的低维纳钉钉标准,特别是当固定覆盖节点的网络结构和量时,获得耦合强度的约束条件。 提出了一种算法以确定周期性间歇控制器的量,并在定向网络中定位这些间歇控制器,其中还示出了复杂网络的固定控制中的节点Out-(In-)程度的显着性。 最后,由12个耦合延迟的CHUA振荡器组成的定向网络被设计为数字示例以验证理论分析的有效性。

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