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Detection of Island Formation and Identification of Causal Factors Under Multiple Line Outages

机译:多线路中断下岛形成的检测和因果关系识别

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The detection of island formation in power networks is prerequisite for the study of security analysis and control. We develop a combined graph-theoretic-algebraic approach to detect island formation in power system networks under multiple line outages. We construct the approach by gaining insights into the topological impacts of outaged lines on system connectivity from the use of power transfer distribution factor information. We develop a one-to-one relationship between minimal cutsets and a matrix of the generalized line outage distribution factors for multiple line outages. This relationship requires computations on lower order matrices and so is able to provide rapidly essential information. The proposed approach detects the island formation and identifies the subset of outaged lines that is the causal factor. Furthermore, for cases in which the set of outaged lines does not result in system separation, the method has the ability to identify whether a set of candidate line outages separates the system. Consequently, the need for establishing nodal system connectivity is bypassed. We illustrate the capabilities of the proposed approach on two large-scale networks. The proposed approach provides an effective tool for both real-time and offline environments for security analysis and control
机译:电网中孤岛形成的检测是安全分析与控制研究的前提。我们开发了一种组合的图论-代数方法来检测电力系统网络中多条线路中断下的孤岛形成。我们通过使用输电分配因子信息来了解中断线路对系统连接性的拓扑影响,从而构造该方法。我们建立了最小割集与多个线路中断的广义线路中断分布因子矩阵之间的一对一关系。这种关系需要对低阶矩阵进行计算,因此能够快速提供必要的信息。所提出的方法可以检测岛的形成并识别出故障线的子集,这是因果关系。此外,对于一组中断的线路不导致系统分离的情况,该方法具有识别一组候选线路中断是否将系统分开的能力。因此,绕过了建立节点系统连通性的需要。我们在两个大型网络上说明了该方法的功能。所提出的方法为实时和离线环境的安全分析和控制提供了有效的工具。

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