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CAPACITIVE COUPLING COMPENSATION FACILITATING SINGLE-POLE SWITCHING ON SIX-PHASE TRANSMISSION LINES (SECONDARY ARC, RECOVERY VOLTAGE).

机译:电容耦合补偿有利于六相传输线(二次电弧,恢复电压)上的单极切换。

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摘要

In this research, a novel shunt compensation scheme design procedure is developed for unbalanced, untransposed n-phase transmission lines. The main function of the scheme is to reduce the effect of the capacitive coupling on untransposed transmission lines to levels where successful single-pole switching is assured. The analysis procedure is carried out for six-phase transmission lines, but it could be applied to any n-phase system.;The results indicate that without the shunt compensation the single-pole switching application to EHV six-phase transmission lines will not be successful. When the shunt compensation scheme is used, the magnitude and rate of rise of the recovery voltage, and the secondary arc current are reduced by more than 50% of their uncompensated values. These results indicate that single-pole switching application to the compensated lines is expected to be successful.;In the first part of the research, the arc characteristics for various gap lengths are investigated. The results of the investigation are utilized in developing the transmission line gap recovery characteristics. Equations that express the capacitively-coupled secondary arc current and recovery voltage in terms of line constants and the compensation scheme element values are derived. A digital computer is used to find the optimum compensation element values using these equations. Two existing transmission line data are utilized as a demonstration of the adequacy of the shunt compensation in reducing the secondary arc current and the recovery voltage. The performance of the compensation scheme under various line conditions is verified by simulating the line and the compensation bank using the Electromagnetic Transient digital computer program.
机译:在这项研究中,针对不平衡,不换位的n相传输线,开发了一种新颖的并联补偿方案设计程序。该方案的主要功能是将电容耦合对未换位传输线上的影响减小到可以确保成功进行单极切换的水平。分析程序针对六相输电线路进行,但可以应用于任何n相系统。结果表明,在没有并联补偿的情况下,单极切换不适用于超高压六相输电线路成功。当使用并联补偿方案时,恢复电压的大小和上升速率以及次级电弧电流将减少其未补偿值的50%以上。这些结果表明,单极开关在补偿线路上的应用有望成功。在研究的第一部分,研究了各种间隙长度的电弧特性。研究结果被用于开发传输线间隙恢复特性。得出了以线常数和补偿方案元素值表示电容耦合的次级电弧电流和恢复电压的方程式。使用数字计算机使用这些方程式找到最佳补偿元素值。利用两个现有的传输线数据来证明分流补偿在降低次级电弧电流和恢复电压方面是否足够。通过使用电磁暂态数字计算机程序模拟线路和补偿组,可以验证各种线路条件下补偿方案的性能。

著录项

  • 作者

    AL-SHEHRI, ABDALLAH MOH'D.;

  • 作者单位

    Oregon State University.;

  • 授予单位 Oregon State University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 1985
  • 页码 181 p.
  • 总页数 181
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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