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Generalized integrated framework for modelling communications and electric power infrastructure resilience

机译:用于通信和电力基础设施弹性建模的通用集成框架

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This paper presents a quantitative framework for modeling electric power and communications infrastructures resilience. While in the past, resilience models applied to these infrastructures have focused on technological aspects, a fundamental novel aspect of the herein presented framework is the integral inclusion of models for human-driven processes, such as logistics, that influences recovery speed. Another fundamental novel aspect of the presented modeling framework is the generalized representation of dependencies and the characterization of the role that service buffers, such as energy storage, have on representing dependencies of associated services. Infrastructure system models combine three interconnected domains, each mathematically represented by at least one graph: a physical domain, a human/organizational domain, and a cyber domain. Each of the graphs that form the proposed framework represent the provision of a service. Thus, modeling of functional dependencies is inherently part of the developed models.
机译:本文提出了一种用于建模电力和通信基础设施弹性的量化框架。尽管过去,应用于这些基础结构的弹性模型已经集中在技术方面,但是本文介绍的框架的一个基本的新颖方面是将诸如恢复力之类的人为驱动过程的模型的整体包含进来,这会影响恢复速度。所提出的建模框架的另一个基本的新颖方面是相关性的广义表示以及服务缓冲区(例如能量存储)在表示关联服务的相关性方面的角色表征。基础设施系统模型结合了三个相互关联的域,每个域在数学上均由至少一个图形表示:物理域,人员/组织域和网络域。构成建议框架的每个图形均表示服务的提供。因此,功能依存关系建模本质上是已开发模型的一部分。

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