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Definition, implementation and application of a model-based framework for analyzing interdependencies in electric power systems

机译:基于模型的框架的定义,实现和应用,用于分析电力系统中的相互依赖性

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摘要

Electric power systems are prominent representatives of the critical infrastructure. Existing electric power systems are composed by two cooperating infrastructures: the electric infrastructure, which is responsible for electricity generation and electricity transmission to customers; and information technology based control systems that monitor and control the physical parameters of the electric infrastructure and trigger appropriate reconfigurations in emergency situations. The interactions between these two cooperating infrastructures must be carefully analyzed to understand and characterize their (inter)dependencies, i.e., how the state of one infrastructure influences or is correlated to the state of the other. This paper proposes a model-based framework for quantitatively analyzing the propagation and impact of malfunctions in electric power systems. The framework is implemented using the stochastic activity network (SAN) formalism and is applied to concrete case studies that support the understanding and assessment of the impact of interdependencies. The results assist in developing countermeasures that can help reduce electric power system vulnerabilities.
机译:电力系统是关键基础设施的杰出代表。现有的电力系统由两个相互配合的基础设施组成:电力基础设施,负责发电和向客户的输电;基于信息技术的控制系统,用于监视和控制电气基础设施的物理参数,并在紧急情况下触发适当的重新配置。必须仔细分析这两个协作基础架构之间的交互,以理解和表征它们的(相互)依赖性,即,一个基础架构的状态如何影响或关联到另一个基础架构的状态。本文提出了一种基于模型的框架,用于定量分析电力系统故障的传播和影响。该框架使用随机活动网络(SAN)形式主义实现,并应用于支持支持对相互依赖性影响的理解和评估的具体案例研究。结果有助于制定可以减少电力系统漏洞的对策。

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