行波故障定位的研究

Q2 Engineering
Baig Aa, Yang Xx
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引用次数: 0

摘要

随着现代电力系统的发展,快速准确的故障定位变得越来越重要。电网产生暂态行波信号,沿输电线路以接近光速的速度传输到各变电站。利用故障行波的准确到达时间和各变电站记录的波形特征,可以实现基于行波的故障定位和保护。故障定位精度高,保护动作速度快。因此,电流互感器饱和、低频振荡和故障电阻不会对其产生影响。在电网各变电站安装故障定位装置(FLD),在控制中心安装行波主机。当故障发生时,FLD记录开关操作信息和行波到达时间,然后将信息传输到主机。雷击故障定位方法只能对雷击引起的故障进行定位,难以满足电力系统的运行要求。GPS行波故障定位方法简单、精度高,已在特高压中得到应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Study of Travelling Wave Fault Location
In the present modern era with the development of power systems, fast and accurate faults locations becoming more and more important. Power grids produce transient travelling wave signals, which transmit along the transmission line to each substation with the speed approaching the velocity of light. Using the exact arrival time of the fault traveling wave and the waveform characteristics recorded at each substation, the traveling wave based fault location and protection can be realized. The fault location has high precision, and the protection has fast action speed. So, current transformer saturation low frequency oscillation and fault resistance cannot influence it. Fault location device (FLD) is installed at each substation in power grid, and travelling wave host computer is installed in control center. When a fault occurs, FLD records the switch operation information and the arrival time of the travelling wave, the information is then transmitted to the host computer. Lightning strike fault location method can only locate the fault caused by lightning, and it hardly satisfies the operation requirements in power system. Travelling wave fault location method with GPS is simple and with high precision, it has been applied in extra-high-voltage.
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CiteScore
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