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Resilience Modeling and Simulation of Smart Grids

机译:智能电网的恢复和仿真

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This paper proposes a three-stage framework to analyze the smart grid resilience. In each stage, a series of resilience improvement strategies are introduced to realize the smart grids, and appropriate metrics are also identified and then combined to establish an annual resilience metric. Taking the power transmission grid in Harris County, Texas USA as case study, this paper establishes an original power grid model and several smart grid models to compare the effectiveness of resilience improvement strategies in different stages. Results show that the annual resilience of the smart grid with all three-stage improvements increases 0.035% compared to the original grid. Although the improvement is small in magnitude due to the high reliability of real power grids, it may save hundreds of millions of dollars. This framework can provide insights to design resilient smart infrastructure systems and retrofit present ones.
机译:本文提出了一种三阶段框架,分析智能电网弹性。在每个阶段,引入了一系列弹性改善策略以实现智能电网,也识别出适当的指标,然后组合以建立年度弹性度量。将德克萨斯州哈里斯县的电力传输电网作为案例研究,建立了原始电网模型和几种智能电网模型,以比较不同阶段的弹性改善策略的有效性。结果表明,与原始电网相比,智能电网的年度恢复性与所有三阶段改进增加了0.035%。虽然由于实际电网的高可靠性,但由于实际电网的高可靠性,但它可能节省数亿美元。该框架可以提供设计弹性智能基础设施系统和改装目前的洞察。

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