Computation of the Corona Onset Voltage for DC at Two Different Altitudes

R. Cortés, F. E. Cortes, R. Linares y Miranda, A. Ozdemir, S. Ilhan
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Abstract

In this paper, a methodology based on the finite element method is used to analyze the corona onset voltage on different structures of HVDC lines, the methodology includes atmospheric conditions such as pressure and temperature. The results obtained in simulations were verified through two experimental set-ups (rod-to-plane and corona cage) at sea level and 2200 m above the sea level. According to the results, the predicted values are in good agreement with the measured values in most of the tested configurations. Once the accuracy of the methodology was verified, it was used to modify the conductor bundle geometry of an HVDC line to maximize the corona onset voltage. The importance of this work is due to the prediction of the corona onset voltage since corona discharge in elements of a high voltage transmission line is an undesirable phenomenon because it causes power losses and electromagnetic interference.
两种不同高度直流电晕起始电压的计算
本文采用基于有限元法的方法对高压直流线路不同结构的电晕起电压进行了分析,该方法包括压力和温度等大气条件。通过海平面和海拔2200 m的两个实验装置(杆对平面和电晕笼)验证了模拟结果。结果表明,在大多数测试配置中,预测值与实测值吻合较好。一旦该方法的准确性得到验证,它就被用于修改高压直流线路的导体束几何形状,以最大限度地提高电晕起始电压。这项工作的重要性在于电晕起始电压的预测,因为电晕放电在高压输电线路的元件中是一种不良现象,因为它会造成功率损失和电磁干扰。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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