Power system vulnerability analysis - towards validation of centrality measures

Timothy Ernster, A. Srivastava
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引用次数: 30

Abstract

Threat assessments play a key role in determining appropriate mitigation strategies to counter credible threats to the power system. In order to further understand the capability of a malicious agent to coordinate an attack on the power grid given limited system information, graph theory based centrality measures are utilized for power systems vulnerability analysis. Results are compared to vulnerability analysis indices utilizing DC power flow based linear sensitivity factors with complete power system information. Correlations of centrality and linear sensitivity factor based vulnerability rankings are performed, and matched pair comparisons of top rankings are presented using the nonparametric Wilcoxon signed rank statistical test. Evidence is presented in support of the edge betweeness centrality measure in determining sensitive line outages based solely on the branch impedance values of a power system. Results obtained for four different test case systems indicate the threat potential of a system attack planned from limited topology information.
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电力系统脆弱性分析——面向中心措施的验证
威胁评估在确定适当的缓解战略以应对电力系统面临的可信威胁方面发挥着关键作用。为了进一步了解恶意代理在有限系统信息下协调攻击电网的能力,将基于图论的中心性测度用于电力系统脆弱性分析。结果与完整电力系统信息下基于直流潮流线性灵敏度因子的脆弱性分析指标进行了比较。对基于中心性和线性敏感性因子的脆弱性排名进行相关性分析,并采用非参数Wilcoxon符号秩统计检验对排名进行配对比较。在仅根据电力系统支路阻抗值确定敏感线路故障时,给出了支持边缘中间度中心性度量的证据。为四个不同的测试用例系统获得的结果表明,从有限的拓扑信息中计划的系统攻击的威胁潜力。
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