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Stochastic hybrid multi-links networks with mixed delays: stabilisation analysis via aperiodically adaptive intermittent control

机译:具有混合延迟的随机混合多链路网络:通过非周期性自适应间歇控制稳定分析

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This paper investigates the problem of the mean square exponential stabilisation for stochastic hybrid multi-links networks with mixed delays (SHMND) via aperiodically adaptive intermittent control. Based on a new differential inequality with mixed delays and Markovian switching, two stability criteria are derived, which weakens the restriction on parameter that determines exponential convergence rate and reduces the conservativeness. The intensity of stochastic perturbations, coupling in multi-links and intermittent control gain have a great influence on these stability criteria. Different from the previous work that studying multi-links systems, we utilise Lyapunov method and the tree-cycle identity in graph theory integrating differential inequality techniques. Furthermore, the main results are applied to the stochastic hybrid multi-links oscillators with mixed delays. Finally, we give a numerical example to illustrate the effectiveness of theoretical results.
机译:本文通过非期社会自适应间歇控制调查了随机混合多链节网络与混合延迟(SHMND)的平均方指数稳定网络的问题。基于具有混合延迟和马尔可夫交换的新差分不等式,推导出两个稳定标准,这削弱了确定指数收敛速率并降低保守性的参数的限制。随机扰动的强度,在多链路中的耦合和间歇控制增益对这些稳定标准具有很大的影响。与研究多链路系统的前一项工作不同,我们利用Lyapunov方法和图形理论中的树循环标识集成了差分不等式技术。此外,主要结果应用于具有混合延迟的随机混合多环振荡器。最后,我们给出了一个数字示例以说明理论结果的有效性。

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