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首页> 外文期刊>Nonlinear analysis. Hybrid systems: An International Multidisciplinary Journal >Stabilization of stochastic delayed networks with Markovian switching and hybrid nonlinear coupling via aperiodically intermittent control
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Stabilization of stochastic delayed networks with Markovian switching and hybrid nonlinear coupling via aperiodically intermittent control

机译:通过对马尔可夫交换和混合非线性耦合通过非周期性间歇控制的随机延迟网络稳定

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摘要

This paper concerns the stabilization problem of stochastic delayed networks with Markovian switching and hybrid coupling (SDNMH) via aperiodically intermittent control. Compared with the existing works on hybrid coupling, the hybrid coupling in this paper can be nonlinear, which is more general. By establishing a new differential inequality on delayed dynamical systems with Markovian switching, the stabilization problem of SDNMH via aperiodically intermittent control is studied. By means of Lyapunov method and graph-theoretic technique, two kinds of sufficient criteria are given. The derived results are closely related to the topology structure of the underlying network, the transition rate of Markov chain, the maximum proportion of rest time and the control gain. Finally, the theoretical results are tested by a class of coupled oscillators networks with Markovian switching and hybrid coupling. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本文涉及通过非周期性间歇控制的随机交换和混合耦合(SDNMH)随机延迟网络的稳定问题。 与现有的混合耦合作品相比,本文中的混合耦合可以是非线性的,这更为一般。 通过在具有Markovian切换的延迟动态系统上建立新的差异不等式,研究了通过非周期性间歇控制的SDNMH的稳定问题。 通过Lyapunov方法和图形理论技术,给出了两种充足的标准。 衍生的结果与潜在网络的拓扑结构密切相关,马尔可夫链的过渡率,休息时间的最大比例和控制增益。 最后,理论结果由一类具有Markovian开关和混合耦合的耦合振荡器网络进行测试。 (c)2018年elestvier有限公司保留所有权利。

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