协调互联电力系统防御的关键信息

E. Bompard, M. Masera, R. Napoli, F. Xue
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引用次数: 1

摘要

近年来,关键基础设施的脆弱性已成为人们关注的焦点。故障(特别是恶意攻击的后果)可能是系统组件的“物理”故障,也可能是信息/通信系统的“网络”故障。同时攻击不同的组件,包括物理和网络,是可能的。在这种情况下,一个给定的互联电力系统的关键信息的识别和排序是至关重要的。本文提出了一个基于社会理性多智能体系统和虚拟博弈特征的博弈模型,该模型可以通过整合物理模型和信息影响来表征互联系统运营商(SO)的故障后决策过程。该模型允许对关键信息进行排序,并确定网络加固措施,以减少关键信息的影响。为了说明问题,将所提出的模型和方法应用于一个34总线测试系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Critical information in coordinating defense of interconnected power systems
The vulnerability of critical infrastructures has become a key-concern in recent years. The faults (in particular as consequences of malicious attacks) may be both ¿physical¿, regarding system components, and ¿cyber¿, regarding information/communication system. Simultaneous attacks to different components, both physical and cyber, may be possible. In this context the identification and rank of the critical information of a given interconnected power system is of the utmost importance. In this paper we propose a game model, based on the socially rational multi-agent system and fictitious play characteristics, that can be used to represent the post-fault decision-making process of interconnected system operators (SO) by integrating the physical model and impact of information. The model allows for the ranking of the critical information and for the determination of network re-enforcements to reduce the impacts of critical information. The proposed model and methods are applied to a 34-buses test system for illustrative purposes.
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