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Modelling the low-frequency dielectric response test of insulation oil

机译:建模绝缘油的低频介电响应测试

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摘要

The frequency domain dielectric response method has been one of the most effective approaches for condition assessment of an electrical insulation system. The low-frequency part is more effective for diagnosing the moisture content and aging status of oil-paper insulation. To facilitate the study of the low-frequency dielectric spectrum of oil-paper insulation, a model applicable to the low-frequency dielectric response of insulation oil is proposed in this study, which is based on the ionic motion of insulation oil. The creation of charge carriers under field test conditions mainly derives from the dissociation of ionic pairs. During testing, ionic motion of insulation oil is jointly affected by thermal diffusion and the electric field; moreover, dissociation and recombination of negative and positive ions also occur. Therefore, the above factors were all considered in the modelling process. The applicability of the model is verified against measured results. For further interpreting the proposed model, the characteristics of the ionic concentration distribution, the relation between ionic distribution and dielectric properties, and the application of the proposed model are analysed.
机译:频域介电响应方法已经成为用于电气绝缘系统状态评估的最有效方法之一。低频部分对于诊断油纸绝缘层的水分含量和老化状态更有效。为便于研究油纸绝缘子的低频介电谱,在绝缘油的离子运动的基础上,提出了一种适用于绝缘油的低频介电响应的模型。在现场测试条件下产生载流子主要来自离子对的解离。在测试过程中,绝缘油的离子运动受热扩散和电场共同影响;此外,还发生负离子和正离子的离解和重组。因此,在建模过程中都考虑了以上因素。针对测量结果验证了模型的适用性。为了进一步解释所提出的模型,分析了离子浓度分布的特征,离子分布与介电性质之间的关系以及所提出模型的应用。

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