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Research on Traveling Wavefront Identification Method Based on the Dominant Frequency Component of Full Waveform

机译:基于全波形主频分量的行波前识别方法研究

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Traveling wavefront identification accuracy and wave speed selection precision are crucial to traveling wave location. Aiming at the two issues, the method based on the dominant frequency component of full waveform is proposed. At first, the time-frequency characteristic is studied by full waveforms of the traveling wave, especially the frequency-dependent characteristic of wave speed and wavefront attenuation. Second, according to the criterion of the maximum energy, the dominant frequency component can be extracted from all frequency components and the corresponding wave speed is calculated. Finally, Teager Energy Operation (TEO) is introduced to enhance the transient feature of the dominant frequency component in order to precisely determine traveling wavefront the arrival time. The simulation results show that the traveling wavefront identification performance based on the proposed method is pretty to meet the fault location requirement. Also, the proposed method is adaptive under different fault conditions.
机译:行波前识别精度和波速选择精度对于行波定位至关重要。针对这两个问题,提出了一种基于全波形主频成分的方法。首先,通过行波的全波形研究时频特性,特别是波速和波前衰减的频率相关特性。其次,根据最大能量的准则,可以从所有频率分量中提取主导频率分量,并计算出相应的波速。最后,引入Teager能量运算(TEO)来增强主频率分量的瞬态特征,以便精确确定行波前的到达时间。仿真结果表明,基于该方法的行波前识别性能完全可以满足故障定位的要求。而且,该方法在不同故障条件下都是自适应的。

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