Determining Node Importance in Graph-Based Modelling of Cyber-Physical Power Systems

A. H. Dabashi, D. Qiu, G. Taylor, Xin Zhang
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Abstract

Electrical power systems have evolved into cyber-physical power systems (CPPS). The increasing interdependence between electrical power systems and cyber systems has introduced new sources of failure as well as causing additional security concerns. Therefore, it is vital to study the increasing level of interdependency using a whole system approach. Whilst power systems and cyber systems have well-matured models and simulation tools in their own regard, adequate whole system analysis tools are yet to be established. After evaluating the whole system challenges of CPPS modelling, this paper introduces a novel index for determining cyber node importance in a graph-based CPPS model. The proposed cyber node importance index (CNII) considers cascading failure, betweenness centrality and the time delay of the shortest paths, which provides a more accurate representation of power systems. To demonstrate the applicability of this approach, the UK’s British Telecom 21st Century Network (BT 21CN) was linked with the GB Transmission System Reduced Model (GB TSRM). Experimental results show the improved accuracy and utility of this method as well as the applicability of analysing cyber contingencies in graph-based CPPS models.
基于图的网络物理电力系统建模中节点重要性的确定
电力系统已经发展成为信息物理电力系统(CPPS)。电力系统和网络系统之间日益增强的相互依存关系带来了新的故障来源,并引发了额外的安全问题。因此,使用整个系统的方法来研究日益增长的相互依赖程度是至关重要的。虽然电力系统和网络系统在各自方面都有成熟的模型和仿真工具,但还没有建立足够的全系统分析工具。在评估了CPPS建模的整个系统挑战之后,本文引入了一种新的指标来确定基于图的CPPS模型中网络节点的重要性。提出的网络节点重要性指数(CNII)考虑了级联故障、中间中心性和最短路径的时延,能够更准确地表征电力系统。为了证明这种方法的适用性,英国的英国电信21世纪网络(BT 21CN)与GB传输系统简化模型(GB TSRM)相关联。实验结果表明,该方法具有较高的准确性和实用性,适用于基于图形的CPPS模型的网络突发事件分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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