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首页> 外文期刊>IEEE transactions on information forensics and security >Integrated Security Analysis on Cascading Failure in Complex Networks
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Integrated Security Analysis on Cascading Failure in Complex Networks

机译:复杂网络级联故障的集成安全性分析

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The security issue of complex networks has drawn significant concerns recently. While pure topological analyzes from a network security perspective provide some effective techniques, their inability to characterize the physical principles requires a more comprehensive model to approximate failure behavior of a complex network in reality. In this paper, based on an extended topological metric, we proposed an approach to examine the vulnerability of a specific type of complex network, i.e., the power system, against cascading failure threats. The proposed approach adopts a model called extended betweenness that combines network structure with electrical characteristics to define the load of power grid components. By using this power transfer distribution factor-based model, we simulated attacks on different components (buses and branches) in the grid and evaluated the vulnerability of the system components with an extended topological cascading failure simulator. Influence of different loading and overloading situations on cascading failures was also evaluated by testing different tolerance factors. Simulation results from a standard IEEE 118-bus test system revealed the vulnerability of network components, which was then validated on a dc power flow simulator with comparisons to other topological measurements. Finally, potential extensions of the approach were also discussed to exhibit both utility and challenge in more complex scenarios and applications.
机译:复杂网络的安全问题最近引起了人们的极大关注。尽管从网络安全性角度出发的纯拓扑分析提供了一些有效的技术,但是它们无法表征物理原理,却需要一个更全面的模型来逼近现实中复杂网络的故障行为。在本文中,基于扩展的拓扑度量,我们提出了一种方法来检查特定类型的复杂网络(即电源系统)针对级联故障威胁的脆弱性。所提出的方法采用了称为扩展中间性的模型,该模型将网络结构与电气特性相结合以定义电网组件的负载。通过使用基于功率分配因子的模型,我们模拟了对网格中不同组件(总线和分支)的攻击,并使用扩展的拓扑级联故障模拟器评估了系统组件的脆弱性。通过测试不同的公差系数,还评估了不同加载和过载情况对级联故障的影响。来自标准IEEE 118总线测试系统的仿真结果揭示了网络组件的脆弱性,然后通过与其他拓扑测量结果进行比较的直流潮流仿真器对其进行了验证。最后,还讨论了该方法的潜在扩展,以展示在更复杂的场景和应用中的效用和挑战。

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