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Accelerated zone-2 trip algorithm for a non-pilot distance relay.

机译:非飞行员距离继电器的加速2区跳闸算法。

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摘要

Distance relays use time stepped protection zones for coordination purposes. The time delay introduced by zone-2 distance relays limits the use of these devices for extra high voltage (EHV) applications since the fast fault clearance requirement is not achieved. Transmission lines are normally protected by means of intercommunicated protection schemes that make use of a dedicated channel in order to overcome the delay. However, this channel is also prone to failure. It could be advantageous to provide the line with fast protection coverage for cases when a communication channel is not available. This thesis presents the analysis, simulation, and implementation of an accelerated zone-2 trip algorithm in non-pilot distance relays. This algorithm aims to provide fast fault clearance for transmission lines that significantly reduce the time-delay introduced by zone-2 distance protection. The algorithm can be used in two- or three-terminal lines by changing its setting values. Tests using an electromagnetic transients program (EMTDC/PSCAD) and Matlab are carried out to evaluate the performance of the proposed technique. The results are compared with the results obtained from two other techniques proposed in the literature. The results show the superior performance of the proposed technique over the other two techniques proposed in the literature. The fast fault clearance requirement of this algorithm is validated through its implementation in a DSP board and subsequent testing using signals generated by a real time digital simulator (RTDS) running a power system model. This DSP implementation also includes a simplified model of a distance relay. New developments in microprocessor-based relays (numerical relays) in terms of computing power and speed along with the simplicity of the proposed technique make the implementation of the algorithm possible in modern numerical distance relays. It is proposed that this algorithm be used as a fast backup scheme to protect two- or three-terminal lines in case the main communication channel degrades, fails or is not available.;Keywords: Distance Protection, Numerical Relays, Protective Relays, Relaying Algorithms, Transmission Lines.
机译:距离继电器使用时间分级保护区进行协调。区域2距离继电器引入的时间延迟限制了这些设备在超高压(EHV)应用中的使用,因为无法满足快速清除故障的要求。传输线通常通过互通保护方案来保护,该方案使用专用信道以克服延迟。但是,此通道也容易出现故障。在通信信道不可用的情况下为线路提供快速的保护覆盖可能是有利的。本文介绍了非飞行员距离继电器中加速2区跳闸算法的分析,仿真和实现。该算法旨在为传输线提供快速的故障清除能力,从而显着减少2区距离保护所引入的时间延迟。通过更改其设置值,该算法可用于两线或三线终端。使用电磁瞬变程序(EMTDC / PSCAD)和Matlab进行了测试,以评估所提出技术的性能。将结果与从文献中提出的其他两种技术获得的结果进行比较。结果表明,所提出的技术优于文献中提出的其他两种技术。通过在DSP板上实现该算法并使用运行电源系统模型的实时数字仿真器(RTDS)生成的信号进行后续测试,可以验证该算法对快速故障清除的要求。该DSP实现还包括距离继电器的简化模型。基于微处理器的继电器(数字继电器)在计算能力和速度方面的新发展以及所提出技术的简便性使得该算法在现代数字距离继电器中的实现成为可能。建议将这种算法用作快速备份方案,以在主通信信道降级,出现故障或不可用时保护两端或三端线路。关键词:距离保护,数字继电器,保护继电器,中继算法,传输线。

著录项

  • 作者

    Rosas Ortiz, German.;

  • 作者单位

    The University of Western Ontario (Canada).;

  • 授予单位 The University of Western Ontario (Canada).;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 191 p.
  • 总页数 191
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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