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Design for resilience in infrastructure distribution networks

机译:设计基础架构配电网络中的弹性

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The recognition that resilience is a critical aspect of infrastructure security has caused the national and homeland security communities to ask "How does one ensure infrastructure resilience?" Previous network resilience analysis methods have generally focused on either pre-disruption prevention investments or post-disruption recovery strategies. This paper expands on those methods by introducing a stochastic optimization model for designing network infrastructure resilience that simultaneously considers pre- and post-disruption activities. The model seeks investment-recovery combinations that minimize the overall cost to a distribution network across a set of disruption scenarios. A set of numerical experiments illustrates how changes to disruption scenarios probabilities affect the optimal resilient design investments.
机译:弹性是基础设施安全的关键方面的认识已引起国家和国土安全界的质疑:“如何确保基础设施的弹性?”先前的网络弹性分析方法通常集中于中断前的预防投资或中断后的恢复策略。本文通过引入随机优化模型来设计这些网络方法,从而扩展了这些方法,该模型同时考虑了破坏前和破坏后的活动。该模型寻求投资回收组合,以最大程度地降低一系列破坏场景下配电网络的总体成本。一组数值实验说明了破坏情景概率的变化如何影响最佳的弹性设计投资。

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