An advanced technique for frequency domain spectroscopy of oil-paper insulation at reduced time using triangular excitation

S. Chatterjee, A. Pradhan, B. Chatterjee, S. Chakravorti
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引用次数: 3

Abstract

This paper presents an advanced method for condition monitoring of oil-paper insulation of the transformer using accelerated dielectric response measurement. In frequency domain spectroscopy, dielectric response current is measured for a period of two cycles over a wide range of frequencies. Such measurements on real life transformers take long time in practice especially in the lower frequency range which is practically problematic. Considering the above-said fact, a new technique has been developed in the present work that can reduce the measurement time significantly. Instead of using the excitation for two cycles, quarter cycle of the excitation is applied on insulation under test. The method is verified on three test samples having different preset moisture contents. The dielectric dissipation factors of the test samples computed from the proposed method, are then compared with the corresponding values calculated for two cycles of the applied excitation. The results show negligible differences in the values of dissipation factors of the test samples obtained with the applied excitation for two cycles with that of quarter cycle.
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提出了一种基于三角激励的油纸绝缘缩时频域谱分析方法
本文提出了一种利用加速介质响应测量对变压器油纸绝缘进行状态监测的新方法。在频域光谱学中,介电响应电流在很宽的频率范围内测量两个周期。这种对实际生活变压器的测量在实践中需要很长时间,特别是在较低的频率范围内,这在实践中是有问题的。考虑到上述事实,本工作开发了一种新技术,可以显著缩短测量时间。用四分之一周期的励磁作用于待测绝缘,而不是用两个周期的励磁。该方法在三个不同预设含水率的试样上进行了验证。用该方法计算得到的测试样品的介电耗散系数,与外加激励两个周期下的相应值进行了比较。结果表明,两周期外加激励与四分之一周期外加激励得到的试样耗散系数值的差异可以忽略不计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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