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Modeling oil-paper insulation frequency domain spectroscopy based on its microscopic dielectric processes

机译:基于其微观电介质工艺的涂油纸绝缘频域光谱法

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摘要

The present study sets out to devise a universal function model to explain the characteristic curve obtained in the frequency domain spectroscopy (FDS) test on oil-paper insulation, based on its microscopic conduction and relaxation processes, and thus to enhance the accuracy and applicability of the test. First, from the analysis of the relationship between the real and imaginary parts of the dielectric's complex permittivity, it is demonstrated that a relaxation peak co-exists with the conduction process in the low-frequency band of an FDS curve obtained for oil-impregnated paper sample. Second, values for polarization barrier heights, essential to the determination of the microscopic polarization mechanisms, are presented as results of FDS and thermally stimulated depolarization current experiments carried out on oil-impregnated paper samples. The polarization peaks obtained in the imaginary permittivity frequency spectrum are determined as, respectively, space charge polarization and interface polarization. Finally, a function model in good agreement with experiment data is proposed, which quantitatively describes the FDS curve in oil-impregnated sample, including two relaxation processes and one conduction process.
机译:本研究规定设计了一种通用功能模型,以解释在频域光谱(FDS)试验中获得的特征曲线基于其微观传导和弛豫过程,从而提高了精度和适用性考试。首先,从分析介电复杂介电常数的真实和虚部之间的关系之间的关系,证明了弛豫峰与用于油浸渍纸的FDS曲线的低频带中的导通过程共存样本。其次,偏振屏障高度的值,对于微观偏振机构的测定是必不可少的,作为FDS和热刺激的去极化电流实验,在油浸纸样品上进行。在假想介电频率频谱中获得的偏振峰分别确定为空间电荷偏振和界面偏振。最后,提出了一种与实验数据的良好一致的功能模型,其定量描述了油浸样品中的FDS曲线,包括两个弛豫过程和一个导电过程。

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