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Comparison of the PD characteristics of epoxy resin under exponential decay pulse and sinusoidal voltages

机译:指数衰减脉冲和正弦电压下环氧树脂局部放电特性的比较

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摘要

The saturable reactor insulation epoxy resin is subjected to exponential decay pulse voltage under normal operating conditions. It is of great importance to study the partial discharge (PD) mechanism of epoxy resin under exponential decay pulse and sinusoidal voltages for optimal insulation design. Thus, the difference in the PD behaviours under the exponential decay pulse and sinusoidal voltages is revealed in this study for the first time, and the PD characteristics of the two types of voltages are compared and analysed at 25 and 110 degrees C. Compared to the results for sinusoidal voltage, a higher amplitude, lower repetitive PD inception voltage peak (RPDIV) and fewer PDs are obtained under an exponential decay pulse voltage. Additionally, for the same type of voltage, the RPDIV is lower, the PD magnitude is higher and the number of PDs is smaller at 110 degrees C than those at 25 degrees C. The experimental results can provide a new reference for the insulation redesign of a saturable reactor under an exponential decay pulse voltage.
机译:在正常工作条件下,可饱和反应堆绝缘环氧树脂承受指数衰减脉冲电压。研究环氧树脂在指数衰减脉冲和正弦电压下的局部放电(PD)机理对于优化绝缘设计具有重要意义。因此,本研究首次揭示了在指数衰减脉冲和正弦电压下PD行为的差异,并在25和110摄氏度下比较和分析了两种电压的PD特性。正弦电压的结果是,在指数衰减脉冲电压下可获得更高的幅度,更低的重复PD起始电压峰值(RPDIV)和更少的PD。此外,对于相同类型的电压,在110℃时RPDIV较低,PD幅值较高,并且PD的数量小于25℃时的PDs。实验结果可为重新设计绝缘子提供新的参考指数衰减脉冲电压下的饱和电抗器。

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