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A stochastic model for cascading failures in smart grid under cyber attack

机译:网络攻击下智能电网连锁故障的随机模型

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The coupling of power systems with cyber networks poses security issues that may threaten the safety and robustness of power systems. In this paper, by combining stochastic process with a state transition description, a stochastic model is presented for describing cascading failure in a cyber-coupled smart grid. A dedicated algorithm is developed to simulate the dynamic profile of the cascading failures, with consideration of the effect of power overloading, malware contagion and interdependency between the power grid and cyber network. Stimulation results on two test cases show that the dynamic profile of the cascading failures in the coupled system displays a “staircase-like” pattern, which can be interpreted as a combined feature of the typical step propagation profile triggered repeatedly by cyber attacks due to network coupling. Furthermore, compared with the isolated power system without coupling cyber network, both the extent and rapidity of power blackouts were intensified by the cyber coupling especially under the cyber attack.
机译:电力系统与网络的耦合带来了安全问题,可能会威胁到电力系统的安全性和鲁棒性。在本文中,通过将随机过程与状态转换描述相结合,提出了一种用于描述电子耦合智能电网中级联故障的随机模型。考虑到电力过载,恶意软件感染以及电网与网络之间相互依存的影响,开发了一种专用算法来模拟级联故障的动态情况。在两个测试用例上的刺激结果表明,耦合系统中级联故障的动态剖面显示出“阶梯状”模式,可以将其解释为典型的步进传播剖面的组合特征,该典型步进传播剖面是由网络造成的网络攻击反复触发的耦合。此外,与没有耦合网络的隔离电力系统相比,尤其是在网络攻击下,网络耦合会加剧停电的程度和速度。

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