On a Modeling Framework for the Analysis of Interdependencies in Electric Power Systems

S. Chiaradonna, P. Lollini, F. Giandomenico
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引用次数: 41

Abstract

Nowadays, economy, security and quality of life heavily depend on the resiliency of a number of critical infrastructures, including the electric power system (EPS), through which vital services are provided. In existing EPS two cooperating infrastructures are involved: the electric infrastructure (EI) for the electricity generation and transportation to final users, and its information-technology based control system (ITCS) devoted to controlling and regulating the EI physical parameters and triggering reconfigurations in emergency situations. This paper proposes a modeling framework to capture EI and ITCS aspects, focusing on their interdependencies that contributed to the occurrence of several cascading failures in the past 40 years. A quite detailed analysis of the EI and ITCS structure and behavior is performed; in particular, the ITCS and EI behaviors are described by discrete and hybrid-state processes, respectively. To substantiate the approach, the implementation of a few basic modeling mechanisms inside an existing multiformalism/ multi-solution tool is also discussed.
电力系统相互依赖分析的建模框架
如今,经济、安全和生活质量在很大程度上依赖于一些关键基础设施的弹性,包括电力系统(EPS),通过它提供重要的服务。在现有的EPS中涉及两个合作的基础设施:用于发电和向最终用户输送电力的电力基础设施(EI)及其基于信息技术的控制系统(ITCS),该系统致力于控制和调节EI的物理参数并在紧急情况下触发重新配置。本文提出了一个建模框架,以捕获EI和ITCS方面,重点关注它们之间的相互依赖关系,这些关系导致了过去40年发生的几次级联失败。对EI和ITCS的结构和行为进行了相当详细的分析;特别是,ITCS和EI行为分别由离散和混合状态过程描述。为了证实该方法,还讨论了在现有的多形式/多解决方案工具中实现一些基本建模机制。
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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