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Synchronisation of stochastic-coupled intermittent control systems with delays and Lévy noise on networks without strong connectedness

机译:在没有强连通性的网络上具有延迟和Lévy噪声的随机耦合间歇控制系统的同步

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This study considers the synchronisation of stochastic-coupled systems with time-varying delays and Levy noise on networks without strong connectedness (SCSTLNC) through periodically intermittent control. Also, here, internal delays, coupling delay, white noise, and Levy noise are considered in SCSTLNC. Then, to guarantee synchronisation of SCSTLNC, several useful criteria are obtained by applying some techniques of inequalities, such as a graph-theoretic approach, a hierarchical approach, and the theory of asymptotically autonomous systems. The intensity of control is closely related to the coupling strength and the perturbed intensity of noise. In particular, the synchronisation of stochastic-coupled oscillators with time-varying delays and Levy noise on networks without strong connectedness as a practical application of the authors' theoretical results are investigated. Finally, a numerical example of oscillator networks is provided to demonstrate the validity and feasibility of their analytical results.
机译:这项研究考虑了具有时变时滞和随机噪声的随机耦合系统在不具有强连通性的网络上的同步(SCSTLNC),通过周期性间歇控制进行同步。同样,在这里,在SCSTLNC中考虑了内部延迟,耦合延迟,白噪声和Levy噪声。然后,为了保证SCSTLNC的同步,通过应用一些不等式技术(例如图论方法,分层方法和渐近自治系统理论)获得了一些有用的准则。控制强度与耦合强度和噪声的扰动强度密切相关。特别地,研究了在不具有强连通性的网络上具有时变时滞和Levy噪声的随机耦合振荡器的同步作为作者理论结果的实际应用。最后,给出了一个振荡器网络的数值例子,以证明其分析结果的有效性和可行性。

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