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首页> 外文期刊>Dielectrics and Electrical Insulation, IEEE Transactions on >Determination of the corona inception voltage in an extra high voltage substation connector
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Determination of the corona inception voltage in an extra high voltage substation connector

机译:确定超高压变电站连接器中的电晕起始电压

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Substation connectors play a key role in the reliability of power transmission systems. Despite this fact, their behavior has been rarely studied, especially in regard to electric stress. In this study the corona inception voltage of a complex-shaped 765 kV substation connector is calculated by using a three-dimensional finite-element approach combined with the semi-empirical Pedersen approach. The method proposed was previously validated by using available experimental data obtained from sphere-to-plane, concentric cylinders and point-to-plane non-uniform air gaps. To further validate the accuracy of this method, the corona inception voltage of the analyzed substation connector was obtained by making comparisons with experimental tests conducted in a high voltage laboratory. Results show the need to calculate the corona inception voltage for complex geometries and large air gaps. Using this proposed approach allows us to identify peak or stress points of the connector surface. Hence, this system strongly appears to be a valuable tool to assist the design process of substation connectors and other high voltage devices for minimizing corona activity.
机译:变电站连接器在输电系统的可靠性中起着关键作用。尽管如此,很少研究它们的行为,特别是在电应力方面。在这项研究中,通过使用三维有限元方法与半经验Pedersen方法相结合,来计算复杂形状的765 kV变电站连接器的电晕起始电压。以前通过使用从球面到平面,同心圆柱体和点对面非均匀气隙获得的可用实验数据对所提出的方法进行了验证。为了进一步验证该方法的准确性,通过与在高压实验室中进行的实验测试进行比较,获得了所分析的变电站连接器的电晕起始电压。结果表明,需要为复杂的几何形状和较大的气隙计算电晕起始电压。使用这种提议的方法可以使我们确定连接器表面的峰值或应力点。因此,该系统似乎是辅助变电站连接器和其他高压设备设计过程中使电晕活动最小化的有价值的工具。

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