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Estimation of paper moisture content based on dielectric dissipation factor of oil-paper insulation under non-sinusoidal excitations

机译:基于非正弦激励下油纸绝缘子介电损耗因子的纸张含水量估算

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摘要

Frequency Domain Spectroscopy is a popular non-invasive method that is widely used for condition assessment of oil-paper insulation in real-life power transformers. Conventional Frequency Domain Spectroscopy is done using sinusoidal excitation over a wide frequency range. In this work, a different approach has been taken to investigate some more possibilities of Frequency Domain Spectroscopy using non-sinusoidal excitation for a better condition assessment of oil-paper insulation. For that, triangular waveshape was chosen as non-sinusoidal excitations whose slope can be changed to vary the harmonic content and amplitudes of constituent components. Samples with preset moisture contents that emulate the oil-paper insulation of real-life transformer have been prepared in the laboratory for the assessment of insulation condition. For a comparative study, both sinusoidal and triangular excitations having same peak as well as time period are applied to the prepared samples under controlled environmental condition and corresponding dielectric response currents are measured. From the applied voltages and corresponding dielectric response currents, dielectric dissipation factors are calculated and compared. It has been observed that use of nonsinusoidal excitation provides better results than sinusoidal excitation in the estimation of paper moisture content. It has also been observed that among the applied non-sinusoidal excitations, a particular waveform provides more accurate information about the paper moisture content.
机译:频域光谱法是一种流行的非侵入性方法,已广泛用于现实生活电力变压器中油纸绝缘的状态评估。常规频域光谱学是在宽频率范围内使用正弦激励完成的。在这项工作中,采用了不同的方法来研究使用非正弦激励的频域光谱法的更多可能性,以更好地评估油纸绝缘性。为此,选择三角波形作为非正弦激励,其斜率可以更改以改变谐波含量和组成分量的幅度。在实验室中准备了具有预设水分含量的样本,这些样本可模拟真实变压器的油纸绝缘,以评估绝缘条件。为了进行比较研究,在受控的环境条件下,将具有相同峰值和时间周期的正弦和三角形激励应用于已制备的样品,并测量相应的介电响应电流。根据施加的电压和相应的介电响应电流,可以计算并比较介电损耗因子。已经观察到,在估计纸的水分含量方面,使用非正弦激励比正弦激励能提供更好的结果。还已经观察到,在施加的非正弦激励中,特定波形提供了有关纸张水分含量的更准确信息。

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