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The Node Degree Distribution in Power Grid and Its Topology Robustness under Random and Selective Node Removals

机译:随机和选择性节点去除下电网的节点度分布及其拓扑鲁棒性

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In this paper we numerically study the topology robustness of power grids under random and selective node breakdowns, and analytically estimate the critical node-removal thresholds to disintegrate a system, based on the available US power grid data. We also present an analysis on the node degree distribution in power grids because it closely relates with the topology robustness. It is found that the node degree in a power grid can be well fitted by a mixture distribution coming from the sum of a truncated Geometric random variable and an irregular Discrete random variable. With the findings we obtain better estimates of the threshold under selective node breakdowns which predict the numerical thresholds more correctly.
机译:在本文中,我们通过数值研究随机和选择性节点故障下电网的拓扑鲁棒性,并根据可用的美国电网数据分析性地估计了关键节点去除阈值以瓦解系统。我们还提出了对电网节点度分布的分析,因为它与拓扑鲁棒性密切相关。发现通过截断的几何随机变量和不规则离散随机变量之和得到的混合分布可以很好地拟合电网中的节点度。通过这些发现,我们可以更好地估计选择性节点故障下的阈值,从而更正确地预测数字阈值。

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