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Inception voltage of corona in bipolar ionized fields-effect on corona power loss

机译:双极电离场中电晕的起始电压对电晕功率损耗的影响

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In this paper, an iterative finite-element-based algorithm is presented as a numerical tool for the solution of the bipolar ionized field around high-voltage DC (HVDC) transmission lines. The effect of including unequal values of the positive and negative corona inception voltages and ion mobilities on the corona power loss is investigated. In addition, the effect of negative ion field enhancement on reducing the positive conductor corona inception voltage is also studied. The present algorithm is applied to different laboratory and full-scale transmission line configurations. Comparison with previously computed V-I characteristics showed that the present computed values were in better agreement with the experiment. Also, it has been found that the effect of unequal corona inception voltages on the corona power loss (or corona current) is noticeable at applied voltages very near to the inception values.
机译:本文提出了一种基于有限元的迭代算法,作为求解高压直流输电线路周围双极电离场的数值工具。研究了包括不相等的正负电晕起始电压和离子迁移率值对电晕功率损耗的影响。另外,还研究了负离子场增强对降低正导体电晕起始电压的影响。本算法适用于不同的实验室和满量程传输线配置。与先前计算的V-I特性的比较表明,目前的计算值与实验更好地吻合。而且,已经发现不相等的电晕起始电压对电晕功率损耗(或电晕电流)的影响在非常接近起始值的施加电压下是明显的。

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