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ELECTRIC POWER SYSTEM ONE-LINE DIAGRAM GENERATION WITH BRANCH AND BOUND ALGORITHM

机译:电力系统单线图生成分支和绑定算法

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This paper presents an algorithm for automatic one-line diagram generation for power distribution systems. These systems are large and their mathematical graph representations consist of (up to) thousands of vertices (substations, junctions, pole switches) and edges (i.e. power lines). Their succinct visualization is essential in SCADA applications where a well constructed one-line diagram enables dispatchers to perform their daily tasks more efficiently (e.g. fault restoration). The algorithm proposed in this paper is optimized for the power system domain. It is based on the classical divide and conquer algorithm as it divides the large graphs into smaller, more manageable parts, which are separately drawn by the branch and bound algorithm and combined into complete one-line diagrams. The algorithm was tested both on test networks and real life feeders with multiple feed-in points and interconnects.
机译:本文介绍了一种用于配电系统的自动单线图代的算法。这些系统很大,并且其数学图表表示由数千个顶点(变电站,结,极开关)和边缘(即电源线)组成。它们的简洁可视化对于SCADA应用中是必不可少的,其中构造良好的单线图使调度员能够更有效地执行其日常任务(例如故障恢复)。本文提出的算法针对电力系统域进行了优化。它基于古典鸿沟和征服算法,因为它将大图分成更小,更可管理的部件,这些部分由分支和绑定算法分别绘制并组合成完整的单行图。该算法在测试网络和现实寿命馈线上进行测试,具有多个进料点和互连。

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