Comparison of IEEE and IEC standards for calculations of insulation levels and electrical clearances for 230 kV air insulated substation

T. Thanasaksiri
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Abstract

This paper compares the calculations of insulation levels and electrical clearances for 230 kV air insulated substation based on IEEE and IEC standards. The IEEE Std. 1427 can be applied for phase to ground and phase to phase insulations and electrical clearances calculations. Besides calculations, the simulation tool, EMTP as presents in IEEE Std. 1313.2 can be helpful for estimation the crest voltages at any location in substation. According to IEEE Std. 1427 which taking into account the basic switching impulse insulation levels (BSL), the iterative method is also required. At this voltage level, the procedure for calculations refer to IEC 60071-2 in range I can be applied. To compile with IEC 60071-2 for calculations the insulation levels and electrical clearances, the iteration process accounting for the standard rated switching impulse withstand voltage or BSL is not required but the test conversion factors have to be considered. The relation between insulation levels and electrical clearances applying IEEE and IEC standards are approximately linear. The insulation levels and electrical clearances when applied both standards are not significantly difference.
230kv空气绝缘变电站绝缘等级和电气间隙计算的IEEE和IEC标准比较
比较了基于IEEE和IEC标准的230kv空绝缘变电站绝缘等级和电气间隙的计算方法。IEEE标准1427可用于相对地和相对相绝缘和电气间隙计算。除计算外,IEEE标准1313.2中提出的仿真工具EMTP可以帮助估计变电站任意位置的峰值电压。根据IEEE标准1427中考虑基本开关脉冲绝缘等级(BSL)的要求,迭代法也是必须的。在这个电压等级下,可以应用范围I的IEC 60071-2的计算程序。为了与IEC 60071-2进行绝缘等级和电气间隙的计算,不需要考虑标准额定开关脉冲耐压或BSL的迭代过程,但必须考虑测试转换因素。采用IEEE和IEC标准的绝缘等级和电气间隙之间的关系近似为线性关系。当应用两个标准时,绝缘等级和电气间隙没有显著差异。
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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