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Fault Location using Wavelet Energy Spectrum Analysis of Traveling Waves

机译:使用行进波的小波能谱分析故障位置

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Power grid faults generate traveling wave signals at the fault point. The signals transmit to both ends of the faulted transmission line, and to the whole power grid. The traveling wave signals have many components with different frequencies and all the components have fault characteristics. The signals can be employed in locating accurately the fault, and the location method cannot be influenced by current transformer saturation and low frequency oscillation. The frequency band component with energy concentrated in the detected traveling wave is extracted by wavelet energy spectrum analysis. The arrival time of the component is recorded with wavelet analysis in the time domain. The propagation velocity of the component is calculated by the last recorded traveling wave arrived time at both ends of the tested transmission line, which is generated by an outside disturbance. The fault location scheme is simulated with ATP software. Results show that the accuracy of the method is little affected by fault positions, fault types and grounding resistances. The fault location error is less than 100m.
机译:电网故障在故障点处产生行波信号。信号在故障传输线的两端发射到整个电网。行驶波信号具有许多具有不同频率的组件,所有组件都具有故障特性。信号可以准确地定位故障,并且位置方法不能受电流互感器饱和度和低频振荡的影响。通过小波能谱分析提取具有集中在检测到的行波的能量的频带部件。在时域中的小波分析记录组件的到达时间。通过在测试传输线的两端的最后记录的行进波到达时间来计算组件的传播速度,这是由外部干扰产生的。使用ATP软件模拟故障定位方案。结果表明,该方法的准确性几乎没有受到故障位置,故障类型和接地电阻的影响。故障定位误差小于100米。

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