Semi-Empirical Models for Temperature and Electric Field Dependent Complex Permittivity of Solid Dielectrics

P. Johri, C. Reddy
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Abstract

In this paper, the authors present models for the temperature and electric field dependence of AC complex permittivity of solid dielectrics used for power cables. Until now, variation in permittivity, with temperature and field, has been more or less neglected. Although small, both real and imaginary components of the complex AC permittivity are somewhat nonlinear in nature and thus, determination of true behavior of the dielectric requires accurate modelling of the complex AC permittivity. Careful and intensive experimental investigations are carried out using Novocontrol Technologies’ broadband dielectric spectrometer, for different temperatures and electric fields and constant frequency of 50Hz and the data is used for curve fitting and subsequent optimization. The suitability of the proposed models has been verified for two different dielectrics. Interesting results on coefficients of the models have been arrived at, that provide deeper insight into the dielectric behaviour.
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固体介电体温度与电场相关复介电常数的半经验模型
本文建立了电力电缆用固体介质交流复介电常数与温度和电场的关系模型。到目前为止,介电常数随温度和场的变化或多或少地被忽略了。虽然很小,但复交流介电常数的实分量和虚分量在本质上都是非线性的,因此,确定介电的真实行为需要对复交流介电常数进行精确的建模。利用Novocontrol Technologies的宽带介电光谱仪,在50Hz恒定频率下,对不同温度和电场进行了细致而深入的实验研究,并将数据用于曲线拟合和后续优化。在两种不同的介质中验证了所提出模型的适用性。关于模型系数的有趣结果已经得到,这为介电行为提供了更深入的了解。
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