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Risk and Resilience Analysis of Complex Network Systems Considering Cascading Failure and Recovery Strategy Based on Coupled Map Lattices

机译:考虑联结格子的级联故障恢复策略的复杂网络系统风险与弹性分析

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Risk and resilience are important and challenging issues in complex network systems since a single failure may trigger a whole collapse of the systems due to cascading effect. New theories, models, and methods are urgently demanded to deal with this challenge. In this paper, a coupled map lattices (CML) based approach is adopted to analyze the risk of cascading process in Watts-Strogatz (WS) small-world network and Barabási and Albert (BA) scale-free network, respectively. Then, to achieve an effective and robust system and provide guidance in countering the cascading failure, a modified CML model with recovery strategy factor is proposed. Numerical simulations are put forward based on small-world CML and scale-free CML. The simulation results reveal that appropriate recovery strategies would significantly improve the resilience of networks.
机译:在复杂的网络系统中,风险和弹性是重要且具有挑战性的问题,因为单个故障可能会由于级联效应而触发系统整体崩溃。迫切需要新的理论,模型和方法来应对这一挑战。在本文中,采用基于耦合地图网格(CML)的方法分别分析了Watts-Strogatz(WS)小世界网络和Barabási和Albert(BA)无标度网络中的级联过程风险。然后,为了获得有效和鲁棒的系统并为应对级联故障提供指导,提出了一种具有恢复策略因子的改进的CML模型。提出了基于小世界CML和无标度CML的数值模拟。仿真结果表明,适当的恢复策略将显着提高网络的弹性。

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