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Novel complex network model and its application in identifying critical components of power grid

机译:新型复杂网络模型及其在识别电网关键组件时的应用

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摘要

A novel power grid complex network model in order to in-depth characterize the power grid with its complexity is proposed in this paper, based on the power flow transmission network (PFTN). With novel definitions, considering the path, distance and capacity of power transmission comprehensively, the complex network model can comply with the basic electrical law and the physical constraints of power grid. On this basis, an index set for identifying critical buses and branches within the power grid is designed. The index set includes distance and capability degree, hub, distance and capability betweenness, which can fully evaluate the role of nodes or branches in composing the structure and maintaining the system operation of the power grid. Simulations on both IEEE benchmark systems and a provincial power grid in China are conducted using the proposed model, with critical components identification yielding good results. By comparison with existing methods, the effectiveness and superiority of the proposed model are verified. (C) 2018 Elsevier B.V. All rights reserved.
机译:本文提出了一种新颖的电网复合网络模型,以便深入了解具有其复杂性的功率网格,基于电力流传输网络(PFTN)。通过新颖的定义,考虑到全面的电力传输的路径,距离和容量,复杂的网络模型可以符合基本电气法和电网的物理限制。在此基础上,设计了用于识别电网内的关键总线和分支的索引集。索引集合包括距离和能力的程度,集线器,距离和能力中介,它可以全面评估在构成的结构和保持电网的系统操作的节点或分支的作用。使用拟议模型进行了IEEE基准系统和中国省级电网的模拟,具有关键组成部分识别,造成良好的效果。通过与现有方法的比较,验证了所提出的模型的有效性和优越性。 (c)2018年elestvier b.v.保留所有权利。

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