Analysis of Electric Field Stress and Dielectric Loss in Insulation of Magnetic Component for Cascaded Power Electronic Transformer

Wang Weiwang, He Jiefeng, Wang Xin, L. Ying, Li Shengtao
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引用次数: 2

Abstract

In this paper, the voltage, electric field, and dielectric loss of the high frequency transformer used in power electronic transformer are studied. According to the finite element method (FEM), the influence of the voltage and harmonic components on the electric field distribution and dielectric loss of the high frequency transformer were calculated. The results show that the voltage of high frequency transformer winding to the ground is greater than that of winding terminal voltage at the top module of the cascade structure. Moreover, the former voltage contains lots of high order harmonics. The insulation between the windings suffers from the nonsinusoidal periodic voltages with multi-harmonics. The superposition of the harmonic stresses enhances the electric field distortion in the insulation, which probably causes partial discharges and insulation failure. The electric field respect to the high voltage winding to the ground with harmonics presents high values at the end of the windings and between the turns. The dielectric losses of the insulation under the high-frequency field are much higher than that of power frequency (50 Hz). It is mainly caused by the switching frequency and the high electric field. This work is of great significance to the insulation design of high voltage and large capacity power electronic transformer.
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级联电力电子变压器磁性元件绝缘的电场应力和介电损耗分析
本文对电力电子变压器中高频变压器的电压、电场和介质损耗进行了研究。采用有限元法,计算了电压分量和谐波分量对高频变压器电场分布和介质损耗的影响。结果表明:高频变压器绕组对地电压大于串级结构顶部模块绕组端子电压;此外,前一种电压含有大量的高次谐波。绕组之间的绝缘受到多次谐波的非正弦周期性电压的影响。谐波应力的叠加增强了绝缘中的电场畸变,可能导致局部放电和绝缘失效。高压绕组对地的谐波电场在绕组的末端和匝间呈现高值。在高频场下,绝缘材料的介电损耗远高于工频场下的介电损耗。这主要是由开关频率和高电场引起的。该工作对高压大容量电力电子变压器的绝缘设计具有重要意义。
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