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首页> 外文期刊>Power Delivery, IEEE Transactions on >Integrated Use of Time-Frequency Wavelet Decompositions for Fault Location in Distribution Networks: Theory and Experimental Validation
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Integrated Use of Time-Frequency Wavelet Decompositions for Fault Location in Distribution Networks: Theory and Experimental Validation

机译:时频小波分解在配电网故障定位中的综合应用:理论与实验验证

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摘要

The paper presents a procedure for fault location in distribution networks, based on the use of the integrated time-frequency wavelet decompositions of the voltage transients associated with the fault-originated travelling waves. The proposed analysis of time-frequency wavelet decompositions has been found to improve the identification accuracy of the frequencies associated to the characteristic patterns of a fault location with respect to a sole frequency-domain wavelet analysis. Several laboratory fault tests, carried out by means of a reduced-scale model of a distribution feeder, are used to illustrate the characteristics and assess the performances of the proposed improved procedure. The paper also illustrates the application of the proposed procedure to a transient, originated by a permanent phase-to-phase fault, measured in a real distribution network in which a post-test analysis has identified the faulted branch.
机译:本文基于与故障源行波相关的电压瞬变的综合时频小波分解,提出了配电网故障定位的程序。相对于唯一的频域小波分析,已经发现提出的时频小波分解分析可以提高与故障位置特征模式相关的频率的识别精度。通过分布式馈线的缩小模型进行的几次实验室故障测试均用于说明特征,并评估所提出改进程序的性能。本文还说明了该方法在由永久性相间故障引起的暂态过程中的应用,该暂态过程是在实际配电网中测量的,在该配电网中,事后测试分析已确定了故障分支。

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