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Coordinated attacks against substations and transmission lines in power grids

机译:协同攻击电网中的变电站和输电线路

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Vulnerability analysis on the power grid has been widely conducted from the substation-only and transmission-line-only perspectives. In order words, it is considered that attacks can occur on substations or transmission lines separately. In this paper, we naturally extend existing two perspectives and introduce the joint-substation-transmission-line's perspective, which means attacks can concurrently occur on substations and transmission lines. Vulnerabilities are referred to as these multiple-component combinations that can yield large damage to the power grid. One such combination consists of substations, transmission lines, or both. The new perspective is promising to discover more power grid vulnerabilities. In particular, we conduct the vulnerability analysis on the IEEE 39 bus system. Compared with known substation-only/transmission-line-only vulnerabilities, joint-substation-transmission-line vulnerabilities account for the largest percentage. Referring to three-component vulnerabilities, for instance, joint-substation-transmission-line vulnerabilities account for 76.06%; substation-only and transmission-line-only vulnerabilities account for 10.96% and 12.98%, respectively. In addition, we adopt two existing metrics, degree and load, to study the joint-substation-transmission-line attack strategy. Generally speaking, the joint-substation-transmission-line attack strategy based on the load metric has better attack performance than comparison schemes.
机译:从仅变电站和仅输电线路的角度广泛地进行了电网的脆弱性分析。换句话说,可以认为攻击可以分别在变电站或输电线路上发生。在本文中,我们自然地扩展了现有的两种观点,并介绍了变电站-联合输电线路的观点,这意味着在变电站和输电线路上可能同时发生攻击。漏洞被称为这些多组件组合,可能会对电网造成巨大损害。一种这样的组合由变电站,传输线或两者组成。新的前景有望发现更多的电网漏洞。特别是,我们在IEEE 39总线系统上进行了漏洞分析。与已知的仅变电站/仅输电线路漏洞相比,联合变电站/输电线路漏洞所占比例最大。提到三部分漏洞,例如变电站联合输电线路的漏洞占76.06%。仅变电站和仅输电线路的漏洞分别占10.96%和12.98%。此外,我们采用现有的两个指标(程度和负载)来研究变电站联合输电线路的联合攻击策略。一般而言,基于负载度量的联合变电站传输线攻击策略具有比比较方案更好的攻击性能。

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