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Extended Topological Metrics for the Analysis of Power Grid Vulnerability

机译:用于分析电网脆弱性的扩展拓扑度量

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Vulnerability analysis in power systems is a key issue in modern society and many efforts have contributed to the analysis. Recently, complex networks metrics, applied to assess the topological vulnerability of networked systems, have been used in power grids, such as the betweenness centrality. These metrics may be useful for analyzing the topological vulnerability of power systems because of a close link between their topological structure and physical behavior. However, a pure topological approach fails to capture the electrical specificity of power grids. For this reason, an extended topological method has been proposed by incorporating several electrical features, such as electrical distance, power transfer distribution, and line flow limits, into the pure topological metrics. Starting from the purely topological concept of complex networks, this paper defines an extended betweenness centrality which considers the characteristics of power grids and can measure the local importance of the elements in power grids. The line extended betweenness is compared with the topological betweenness and with the averaged power flow on each line over various operational states in the Italian power grid. The results show that the extended betweenness is superior to topological betweenness in the identification of critical components in power grids and at the same time could be a complementary tool to efficiently enhance vulnerability analysis based on electrical engineering methods.
机译:电力系统中的脆弱性分析是现代社会中的一个关键问题,并且已经做出了许多努力。近来,用于评估联网系统的拓扑脆弱性的复杂网络指标已在电网中使用,例如中间性。由于这些度量的拓扑结构与物理行为之间存在密切联系,因此这些度量对于分析电力系统的拓扑脆弱性可能很有用。但是,纯拓扑方法无法捕获电网的电气特性。由于这个原因,已经提出了一种扩展的拓扑方法,该方法通过将几个电气特征(例如电气距离,功率传输分布和线路流量限制)合并到纯拓扑度量中来提出。从复杂网络的纯拓扑概念开始,本文定义了扩展的中间性中心度,该中心度中心性考虑了电网的特征并可以衡量电网中元素的局部重要性。将线路延伸的中间度与拓扑中间度以及意大利电网中各种运行状态下每条线上的平均功率流进行比较。结果表明,在确定电网中的关键组件时,扩展中间性优于拓扑中间性,同时可以作为基于电气工程方法有效增强脆弱性分析的补充工具。

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