基于复杂网络理论的信息物理系统故障分析

Wentao Zhu, J. Milanović
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引用次数: 10

摘要

网络物理系统研究需要革命性的方法来识别系统的脆弱性,以便制定风险评估和对策,从而减少脆弱性。分析网络物理系统脆弱性的一种可能方法是研究其拓扑结构,从而量化物理侧和网络侧的相互依赖关系。本文建立了电力系统与信息通信技术网络耦合的三维复杂网络模型,将电力母线和通信网络路由器/多路复用器建模为节点,将电力线和通信信道建模为边缘。由于系统结构的变化,在不同的系统运行条件下,系统各部件的脆弱性可能会有所不同。为此,引入脆弱性加权节点度,对电力系统两种特征运行状态下各部件的脆弱性进行评估。利用脆弱性加权节点度识别出最易受攻击的组件,并通过节点移除方法展示这些组件失效的后果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cyber-physical system failure analysis based on Complex Network theory
Cyber-physical system studies request revolutionary methods to identify the vulnerability of the system in order to develop risk assessment and countermeasures and consequently reduce the vulnerabilities. One possible approach to analyze cyber-physical system vulnerability is to study their topology and therefore to quantify the interdependencies on the physical side and on the cyber side. This paper presents a three-dimensional Complex Network model for a coupled electric power system and information and communication technology network, where power buses and communication network routers/multiplexers are modelled as nodes while power lines and communication channels are modelled as edges. The vulnerability of each system component may vary under different system operating conditions due to the change of system's structure. Therefore a Vulnerability-weighted Node Degree is introduced to assess the vulnerability of each component under two characteristic power system operating conditions. The most vulnerable components are identified using Vulnerability-weighted Node Degree and the consequences of failure of these components are demonstrated with Node Removal method.
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