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Dynamic modeling and resilience for power distribution

机译:电力分布动态建模与弹性

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Resilience of power distribution is pertinent to the energy grid under severe weather. This work develops an analytical formulation for large-scale failure and recovery of power distribution induced by severe weather. A focus is on incorporating pertinent characteristics of topological network structures into spatial temporal modeling. Such characteristics are new notations as dynamic failure- and recovery-neighborhoods. The neighborhoods quantify correlated failures and recoveries due to topology and types of components in power distribution. The resulting model is a multi-scale non-stationary spatial temporal random process. Dynamic resilience is then defined based on the model. Using the model and large-scale real data from Hurricane Ike, unique characteristics are identified: The failures follow the 80/20 rule where 74.3% of the total failures result from 20.7% of failure neighborhoods with up to 72 components “failed” together. Thus the hurricane caused a large number of correlated failures. Unlike the failures, the recoveries follow 60/90 rule: 59.3% of recoveries resulted from 92.7% of all neighborhoods where either one component alone or two together recovered. Thus about 60% recoveries were uncorrelated and required individual restorations. The failure and recovery processes are further studied through the resilience metric to identify the least resilient regions and time durations.
机译:功率分布的抵御与恶劣天气下的能量网格相关。这项工作开发了一个分析制定,用于大规模故障和严重天气引起的配电分布恢复。焦点是将拓扑网络结构的相关特征纳入空间时间建模。这些特征是新的符号,作为动态失败和恢复街区。由于电力分布中的组件的拓扑和类型,邻域量化相关的失败和恢复。得到的模型是多尺度非静止空间时间随机过程。然后基于模型来定义动态弹性。使用来自飓风IKE的模型和大规模的实际数据,确定了独特的特征:故障遵循80/20规则,其中总失败的74.3%是20.7%的失败街区,最多可包含72个组件“失败”。因此,飓风导致大量相关的失败。与失败不同,回收率遵循60/90规则:59.3%的回收率为92.7%,其中一个组分单独或两个组件一起恢复。因此,约60%的回收率是不相关的,需要各个修复物。通过弹性度量进一步研究故障和恢复过程,以识别最小弹性区域和时间持续时间。

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