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Electric Potential and Field Calculation of HVDC Composite Insulators by Charge Simulation Method.

机译:用电荷模拟法计算高压直流输电复合绝缘子的电势和电场。

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摘要

High Voltage Direct Current (HVDC) technology is being considered for several long distance point-to-point overhead transmission lines, because of their lower losses and higher transmission capability, when compared to AC systems. Insulators are used to support and isolate the conductors mechanically and electrically. Composite insulators are gaining popularity for both AC and DC lines, for the reasons of light weight and good performance under contaminated conditions.;This research illustrates the electric potential and field computation on HVDC composite insulators by using the charge simulation method. The electric field is calculated under both dry and wet conditions. Under dry conditions, the field distributions along the insulators whose voltage levels range from 500 kV to 1200 kV are calculated and compared. The results indicate that the HVDC insulator produces higher electric field, when compared to AC insulator. Under wet conditions, a 500 kV insulator is modeled with discrete water droplets on the surface. In this case, the field distribution is affected by surface resistivity and separations between droplets. The corona effects on insulators are analyzed for both dry and wet conditions. Corona discharge is created, when electric field strength exceeds the threshold value. Corona and grading rings are placed near the end-fittings of the insulators to reduce occurrence of corona. The dimensions of these rings, specifically their radius, tube thickness and projection from end fittings are optimized. This will help the utilities design proper corona and grading rings to reduce the corona phenomena.
机译:与交流系统相比,高压直流(HVDC)技术被认为可用于几条长距离点对点架空输电线路,因为它们的损耗较低,传输能力更高。绝缘子用于机械和电气上支撑和隔离导体。复合绝缘子由于重量轻和在污染条件下的良好性能而在AC和DC线路上越来越受欢迎。;本研究通过电荷模拟方法说明了HVDC复合绝缘子的电势和电场计算。在干燥和潮湿条件下均会计算出电场。在干燥条件下,将计算并比较沿电压范围在500 kV至1200 kV的绝缘子的场分布。结果表明,与交流绝缘子相比,高压直流绝缘子产生更高的电场。在潮湿条件下,对500 kV绝缘子进行了建模,其表面上有离散的水滴。在这种情况下,场分布受表面电阻率和液滴之间的间距影响。在干燥和潮湿条件下均会分析电晕对绝缘子的影响。当电场强度超过阈值时,将产生电晕放电。电晕和分级环放置在绝缘子的末端配件附近,以减少电晕的发生。这些环的尺寸,特别是它们的半径,管子的厚度和端部接头的突出部都得到了优化。这将有助于公用事业设计适当的电晕和分级环,以减少电晕现象。

著录项

  • 作者

    He, Jiahong.;

  • 作者单位

    Arizona State University.;

  • 授予单位 Arizona State University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 M.S.
  • 年度 2013
  • 页码 85 p.
  • 总页数 85
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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