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A Simplified Method for Quick Calculation of Corona I–V Characteristics of Unipolar Transmission-Line Configurations

机译:快速计算单极传输线结构电晕IV特性的简化方法

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This article is concerned with the calculation of the corona current-voltage characteristics of a unipolar high-voltage direct current (HVDC) transmission line with a single conductor stretched above the ground plane. In light of justified assumptions, the corona charge density around the conductor surface is obtained using an iterative procedure. This makes it possible to calculate the corona current for a given applied voltage. It is interesting to note that the per-unit charge density around the conductor surface with reference to its value at the gap axis has the same distribution irrespective of the conductor radius and height above the ground plane as well as of the applied voltage. Along this axis, Deutsch's assumption is waived and the charge density is calculated as being dependent on the conductor radius, conductor height, onset voltage, and applied voltage. A curve-fitting polynomial is made for the per-unit distribution of charge density around the conductor surface. Determination of the surface charge density at the gap axis and the polynomial describing the per-unit charge density distribution represent the basis of a proposed simplified method for quick calculation of the I-V characteristics, irrespective of the conductor radius and height above the ground plane. The corona current-voltage characteristics, as calculated by the proposed simplified approach, are compared with those calculated before and with those measured in different laboratories. The computation time is drastically reduced when using the proposed simplified method.
机译:本文涉及单根导体延伸到地平面上方的单极高压直流(HVDC)传输线的电晕电流-电压特性的计算。根据合理的假设,导体表面周围的电晕电荷密度可通过迭代程序获得。这样就可以计算给定电压下的电晕电流。有趣的是,导体表面周围的单位电荷密度(以其在间隙轴处的值为基准)具有相同的分布,而与导体半径和接地平面上方的高度以及所施加的电压无关。沿着该轴,Deutsch的假设被放弃,电荷密度的计算取决于导体半径,导体高度,起始电压和施加的电压。曲线拟合多项式用于围绕导体表面的单位密度电荷分布。间隙轴处表面电荷密度的确定以及描述每单位电荷密度分布的多项式代表了为快速计算I-V特性而提出的简化方法的基础,而与导体半径和接地平面上方的高度无关。通过提议的简化方法计算出的电晕电流-电压特性与之前计算出的以及在不同实验室中测量出的电晕电流-电压特性进行了比较。使用建议的简化方法时,可大大减少计算时间。

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