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首页> 外文期刊>IEEE Transactions on Dielectrics and Electrical Insulation >Electric field distribution in oil-pressboard insulation under AC-DC combined voltages
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Electric field distribution in oil-pressboard insulation under AC-DC combined voltages

机译:AC-DC组合电压下油压板绝缘中的电场分布

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摘要

Converter transformers use oil-pressboard as their main dielectric medium and are operated mainly in AC-DC combined electric field. For oil-pressboard insulation, the electric field under DC voltage shows distinctive characteristics from that in AC electric field. Compared to conventional AC power transformers, the electric filed distribution in the converter transformers is much more complicated and remains a big challenge for optimization of insulation design. Existing simulation research in this field falls short of experimental verification and shows limitations in the insulation design of the converter transformers. This paper attempts to fill the gap by measuring the dynamic process and distribution of electric filed in oil-pressboard insulation under the combined field so as to provide reference for insulation design. With the established Kerr-effect electric field measurement platform, the present paper recorded the dynamic process and distribution of AC and DC electric fields at different AC/DC ratios for the double-layer overlapping oil-pressboard insulation model. The research results indicate that 1) the AC electric field distribution in oil is homogeneous and symmetric. The field strengths form linear relation with the amplitudes of applied voltages; 2) the DC electric field distribution in oil is heterogeneous and asymmetric. Under the application of positive DC voltage, the field strength around the upper electrode is much smaller than that of the lower one. The DC electric field strength shows no linear growth with the increase of the applied voltages; 3) the accumulation of interface charges forms the major cause resulting in the asymmetric distribution of the DC electric field at different positions of the insulation. The research results imply that although RC model is recognized as effective simulation method for insulation design of conventional transformers, it shows its limitations and should be enriched and adjusted according to the electric field distribution under AC-DC combined voltage and taking into full consideration of the accumulation of interface charges.
机译:换流变压器以压油板为主要介质,主要在AC-DC组合电场中工作。对于油压板绝缘,直流电压下的电场表现出与交流电场不同的特征。与传统的交流电源变压器相比,转换变压器中的电场分布要复杂得多,并且对于优化绝缘设计仍然是一个巨大的挑战。该领域中的现有仿真研究未能进行实验验证,并且显示出换流变压器的绝缘设计存在局限性。本文试图通过测量组合场下油压绝缘子中电场的动态过程和分布来弥补这一空白,为绝缘设计提供参考。利用已建立的克尔效应电场测量平台,针对双层重叠油压绝缘模型,记录了不同交直流比下交直流电场的动态过程和分布。研究结果表明:1)油中交流电场的分布是均匀对称的。场强与外加电压的幅度成线性关系。 2)石油中的直流电场分布不均匀且不对称。在施加正直流电压的情况下,上电极周围的电场强度远小于下电极周围的电场强度。直流电场强度不随施加电压的增加而线性增加。 3)界面电荷的积累是导致绝缘体不同位置的直流电场不对称分布的主要原因。研究结果表明,尽管RC模型被认为是常规变压器绝缘设计的有效仿真方法,但它显示出它的局限性,应根据交直流组合电压下的电场分布进行充实和调整,并充分考虑到接口费用的累积。

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