An optimal configuration algorithm of traveling wave fault location unit

Feng Deng, Xiangjun Zeng, Zhiqian Bo
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引用次数: 1

Abstract

In order to insure the reliability and economy of network-based traveling wave fault location, an optimal configuration algorithm for network-based traveling wave fault location unit is proposed. It can be analyzed that different network configuration and specific fault location have great influence for the shortest transmission path of initial traveling wave, and therefore affecting the configuration of traveling wave fault location unit. Primarily, setting each line as fault line respectively, the complicated network can be converted into simplified one by using Floyd algorithm, which keeps the fault line in any case. The nodes can be divided into two arrays according to the fault location in simplified network. In the case of different fault line, minimum sharing set can be calculated by the nodes from two arrays, and thus the nodes need to configure traveling wave fault location can be decided. When the fault occurs on special condition, which will detail below, the relevant scheme is suggested. The simulation results illustrate the reliability and feasibility of the algorithm.
一种行波故障定位单元的优化配置算法
为了保证网络行波故障测距的可靠性和经济性,提出了一种网络行波故障测距单元的优化配置算法。可以分析,不同的网络配置和具体的故障位置对初始行波的最短传播路径有很大的影响,从而影响行波故障定位单元的配置。首先,将每条线路分别设置为故障线路,利用Floyd算法将复杂的网络转换为简化的网络,在任何情况下都保持故障线路。在简化组网中,节点可根据故障位置分为两组。在不同故障线路的情况下,两个阵列的节点可以计算出最小共享集,从而确定需要配置行波故障定位的节点。在特殊情况下发生故障时,提出相应的方案,具体情况将在下文详细介绍。仿真结果验证了该算法的可靠性和可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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