论文标题

基于图理论和线路断电分布因子的广义应变分析

Generalized Contingency Analysis Based on Graph Theory and Line Outage Distribution Factor

论文作者

Narimani, Mohammad Rasoul, Huang, Hao, Umunnakwe, Amarachi, Mao, Zeyu, Sahu, Abhijeet, Zonouz, Saman, Davis, Kate

论文摘要

在电力系统中识别缺席的多个关键组件对系统性能有严重影响是称为(N-X)应急分析的电力系统的关键问题。但是,N-X应变分析问题的固有组合特征是在(N-X)项中增加X,这使该问题对于甚至相对较小的测试系统来说是棘手的。我们提出了一个新的框架,用于识别捕获网络拓扑和物理学的N-X意外事件。图理论提供了许多方法来测量电网图,即作为节点和线路作为边缘的总线,从而使研究人员可以表征系统结构并优化算法。本文提出了一种基于群体中心(GBC)概念的可扩展方法,该方法衡量了多个组件在电力网格中的影响以及线路中断分布因子(LODF),这些因素(LODF)发现其损失对网络功率流的影响最大的线。提出的方法是一种快速有效的解决方案,用于识别电力网络中最关键的线路。提出的方法使用各种测试用例验证,结果表明,所提出的方法能够快速识别导致违规的多个意外事件。

Identifying the multiple critical components in power systems whose absence together has severe impact on system performance is a crucial problem for power systems known as (N-x) contingency analysis. However, the inherent combinatorial feature of the N-x contingency analysis problem incurs by the increase of x in the (N-x) term, making the problem intractable for even relatively small test systems. We present a new framework for identifying the N-x contingencies that captures both topology and physics of the network. Graph theory provides many ways to measure power grid graphs, i.e. buses as nodes and lines as edges, allowing researchers to characterize system structure and optimize algorithms. This paper proposes a scalable approach based on the group betweenness centrality (GBC) concept that measures the impact of multiple components in the electric power grid as well as line outage distribution factors (LODFs) that find the lines whose loss has the highest impact on the power flow in the network. The proposed approach is a quick and efficient solution for identifying the most critical lines in power networks. The proposed approach is validated using various test cases, and results show that the proposed approach is able to quickly identify multiple contingencies that result in violations.

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