基于PMU的多源配电网故障定位研究

Mengsheng Zhang, Yi Wang, Zhiguo Zhou, Zufu Li
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引用次数: 4

摘要

准确的故障定位有利于配电网的稳定运行。随着分布式电源、电动汽车、可控负荷等分布式能源的接入,传统的故障保护装置已不能完全适应配电网保护的新形势,需要新的技术和装置。本文提出了一种基于相量测量单元(PMU或synchrophasor)的多源配电网故障定位方法。该定位方法利用某一端PMU的电压和电流信息对每一线段进行迭代,计算候选故障及其故障距离。利用两端PMU的故障电压与测量电压的电压相位关系,得到实际故障位置,消除假故障位置,具有高精度和时钟同步的特点。最后,通过基于Matlab/Simulink平台的算法仿真分析,仿真结果表明该定位方法在多源配电网中具有较高的定位精度。该方法只需在电路两端安装pmu,即可满足不同类型的故障。并且在高DG穿透和高电阻故障的影响下仍具有较高的定位精度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Research on fault location based on PMU for multi-source distribution network
Accurate fault location is beneficial for the stability of power distribution network. With the access of distributed energy resource, such as distributed generations, electric vehicles, controllable load and so on, traditional fault and protection device has been unable to completely adopt to the new situation of distribution network protection, which requires new technologies and devices. In this paper, a new method based on phasor measurement unit, termed PMU or synchrophasor, is proposed to locate the fault in the multi-source distribution network. The location method uses the voltage and current information of PMU on one terminal to iterating every line segment, the candidate faults and its fault distance are calculated. By means of voltage phase relationship between fault voltage and measured voltage of PMUs on two terminals to get the actual fault location and eliminate the pseudo fault locations, with the characteristic of high-precision and clock synchronization in PMU. Finally, the simulation results show that the location method has high position accuracy in the multi-source distribution network by the algorithm simulation analysis based on Matlab/Simulink platform. The method can satisfy different types of fault with simply installing PMUs only on the two terminals of the circuit. And still has high location accuracy with the influence of high DG penetration and high resistance faults.
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