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首页> 外文期刊>IEEE Transactions on Dielectrics and Electrical Insulation >A method for unambiguous identification of on-field recorded insulator leakage current waveforms portraying electrical activity on the surface
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A method for unambiguous identification of on-field recorded insulator leakage current waveforms portraying electrical activity on the surface

机译:一种明确识别现场记录的绝缘子泄漏电流波形的方法,该波形描述了表面的电活动

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摘要

The measurement of insulator leakage current in the field is necessary to have a better understanding of the electrical phenomena on the insulator surface. Since this electrical activity cannot be anticipated in advance, long term monitoring and storage of actual waveforms is necessary. This leads to significant accumulation of data. The presence of field noise in leakage current measurement further aggravates the problem of data size. The storage of noisy waveforms consumes available storage space without adding any significant information regarding the insulator condition. Therefore, it must be ensured that only the on-field recorded waveforms which reflect significant electrical activity on the surface are recorded. In this paper, the authors have proposed the use of Short- Time Modified Hilbert Transform (STMHT) to enhance the local characteristics of the field-recorded waveforms. It has been shown that the magnitude of the STMHT of a waveform at any instant has a good correlation with the slope of the waveform at that instant. Using this property, the proposed method is able to segregate the different types of field noise from waveforms portraying significant electrical activity. It is expected that this paper will contribute to the development of efficient devices for field monitoring of insulators.
机译:为了更好地了解绝缘子表面的电现象,必须对现场的绝缘子泄漏电流进行测量。由于这种电活动无法预先预测,因此需要长期监视和存储实际波形。这导致大量的数据积累。泄漏电流测量中场噪声的存在进一步加剧了数据大小的问题。噪声波形的存储会消耗可用的存储空间,而不会添加有关绝缘子状况的任何重要信息。因此,必须确保只记录反映表面上明显电活动的现场记录波形。在本文中,作者提出使用短时修改的希尔伯特变换(STMHT)来增强现场记录波形的局部特征。已经表明,在任何时刻,波形的STMHT的幅度与该时刻的波形的斜率具有良好的相关性。利用该特性,所提出的方法能够将描绘出显着电活动的波形中的不同类型的场噪声隔离开来。期望本文将有助于开发用于绝缘子现场监测的有效设备。

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