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首页> 外文期刊>IEEE Transactions on Dielectrics and Electrical Insulation >A clustering technique for partial discharge and noise sources identification in power cables by means of waveform parameters
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A clustering technique for partial discharge and noise sources identification in power cables by means of waveform parameters

机译:一种通过波形参数识别电力电缆局部放电和噪声源的聚类技术

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摘要

On-line partial discharge (PD) measurements have become a common technique for assessing the insulation condition of installed high voltage (HV) insulated cables. When on-line tests are performed in noisy environments, or when more than one source of pulse-shaped signals are present in a cable system, it is difficult to perform accurate diagnoses. In these cases, an adequate selection of the non-conventional measuring technique and the implementation of effective signal processing tools are essential for a correct evaluation of the insulation degradation. Once a specific noise rejection filter is applied, many signals can be identified as potential PD pulses, therefore, a classification tool to discriminate the PD sources involved is required. This paper proposes an efficient method for the classification of PD signals and pulse-type noise interferences measured in power cables with HFCT sensors. By using a signal feature generation algorithm, representative parameters associated to the waveform of each pulse acquired are calculated so that they can be separated in different clusters. The efficiency of the clustering technique proposed is demonstrated through an example with three different PD sources and several pulse-shaped interferences measured simultaneously in a cable system with a high frequency current transformer (HFCT).
机译:在线局部放电(PD)测量已成为评估已安装的高压(HV)绝缘电缆的绝缘状况的常用技术。当在嘈杂的环境中执行在线测试时,或者在电缆系统中存在多个脉冲状信号源时,很难执行准确的诊断。在这些情况下,对非常规测量技术的充分选择和有效信号处理工具的实施对于正确评估绝缘劣化至关重要。一旦应用了特定的噪声抑制滤波器,就可以将许多信号识别为潜在的PD脉冲,因此,需要一种分类工具来区分所涉及的PD源。本文提出了一种有效的方法,用于对带有HFCT传感器的电力电缆中测量的PD信号和脉冲型噪声干扰进行分类。通过使用信号特征生成算法,可以计算与采集的每个脉冲的波形相关的代表参数,以便可以将它们分为不同的簇。通过使用三个不同的PD源以及在带有高频电流互感器(HFCT)的电缆系统中同时测量的几个脉冲状干扰的示例,证明了提出的群集技术的效率。

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