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Computer relaying for EHV/UHV transmission lines.

机译:EHV / UHV传输线的计算机中继。

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摘要

As the power systems grow, system connections become more complex. Due to cost and environmental concern, more and more parallel lines and series compensated lines may be installed in the system. In order to efficiently use the transmission network, more nonlinear flexible devices such as the phase shifter and the advanced compensation system will be put into use. Once a fault occurs on such a system, a delay in clearing the fault is usually not permissive. This requires a new generation of relays which have high security and dependability and high operating speed. With the advent of high speed microprocessor and fiber optic communication technologies, it is possible to develop high performance relays. In this dissertation, a new generation of pilot relays and non-pilot relays were developed for a transmission line.; The pilot relays include the instantaneous percentage current differential (IPD), the phase comparison and the phasor based percentage current differential (PPD) principles. In the pilot protections the synchronized phasor measurement techniques are employed and digital CT saturation detectors are incorporated. All these schemes in primary protections feature charging current (or shunt current) compensation. The phasor based principles are designed to work within one and a half cycles; while others based on sample by sample comparison are assumed to work in less than a cycle.; The non-pilot relays to be investigated in this dissertation include the fault location based and phase angle based directional distance relays. One cycle data window is used in the phasor calculation. Both the distance relays are assumed to make a trip decision in about one and a half cycles.; All algorithms were simulated against different fault conditions using EMTP outputs. The simulation results show all the pilot relay algorithms work well for EHV/UHV transmission lines including the series compensated lines. The fault location based distance relay works well in most cases, but it may give a wrong decision for the close-in fault with the fault resistance and may have a singularity problem. The phase angle based distance relay works very well for different fault conditions and is insensitive to fault resistance.; The modified phase angle based distance relay was also developed for the series compensated line. It would not lose the direction for faults with or without fault resistance, either for a compensated system in forward direction, or in an adjacent line in reverse direction. The overreach is within 20% of the protected zone. This relay algorithm is also based on the one-cycle data window DFT, and it can give a reliable trip decision in about two cycles.; All pilot relays with a fiber optic link and the phase angle based distance relay can constitute a new generation of protection systems for EHV/UHV transmission lines.
机译:随着电源系统的发展,系统连接变得越来越复杂。由于成本和环境方面的考虑,系统中可能会安装越来越多的并联线路和串联补偿线路。为了有效地使用传输网络,将使用更多的非线性柔性设备,例如移相器和高级补偿系统。一旦在这样的系统上发生故障,通常不允许延迟清除故障。这需要具有高安全性和可靠性以及高运行速度的新一代继电器。随着高速微处理器和光纤通信技术的出现,有可能开发高性能继电器。本文针对输电线路开发了新一代的引航继电器和非引航继电器。先导继电器包括瞬时百分比电流差(IPD),相位比较和基于相量的百分比电流差(PPD)原理。在先导保护中,采用了同步相量测量技术,并装有数字CT饱和检测器。初级保护中的所有这些方案均具有充电电流(或并联电流)补偿。基于相量的原理被设计为在一个半周期内工作。其他基于样本比较的样本则假定工作周期少于一个周期。本文将要研究的非飞行员继电器包括基于故障位置和基于相角的方向距离继电器。相量计算中使用一个周期数据窗口。假定两个距离继电器都在大约一个半周期内做出跳闸决定。使用EMTP输出针对所有故障条件对所有算法进行了仿真。仿真结果表明,包括串联补偿线在内的所有超导/特高压输电线路都适用于超导/特高压输电线路。基于故障位置的距离继电器在大多数情况下都能很好地工作,但是对于带有故障电阻的近距离故障可能会做出错误的决定,并且可能会出现奇点问题。基于相角的距离继电器在不同的故障条件下都能很好地工作,并且对故障电阻不敏感。还针对串联补偿线路开发了基于相位角的距离继电器。对于有或没有故障电阻的故障,它不会丢失方向,对于正向的补偿系统或反向的相邻线路而言。超出范围在保护区的20%之内。该中继算法也基于单周期数据窗口DFT,并且可以在大约两个周期内给出可靠的跳闸决策。所有带有光纤链路的先导继电器和基于相角的距离继电器都可以构成针对EHV / UHV传输线的新一代保护系统。

著录项

  • 作者

    Yang, Lifeng.;

  • 作者单位

    Virginia Polytechnic Institute and State University.;

  • 授予单位 Virginia Polytechnic Institute and State University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 1994
  • 页码 172 p.
  • 总页数 172
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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