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A power system protection scheme combining impedance measurement and travelling waves: Software and hardware implementation.

机译:结合了阻抗测量和行波的电力系统保护方案:软件和硬件实现。

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摘要

For the stability of the electrical network, it is important to clear faults on high voltage transmission lines quickly with the aid of a high-speed protection system. The conventional method of fault detection is mainly based on impedance measurement techniques. Under fault conditions the measured impedance is proportional to the distance to the fault from the relay location. To calculate the impedance, the fundamental frequency components of the voltage and current signals have to be extracted. The filtering involved in this process has an inherent delay. Any attempt to increase fault detection speed can affect the accuracy of the distance estimation and hence the reliability of the protection scheme.; Fault generated transients or travelling wave signals provide the very first information about a possible disturbance on the line and hence can be used to detect faults very quickly. Ultra-high-speed distance protection schemes based on fault initiated travelling waves measure the distance to the fault using the time taken for a wave to travel from the relaying point to the fault and back. However, travelling wave based protection schemes have reliability issues and have not been well accepted by relay engineers despite their fast fault detection capabilities.; In this thesis, a hybrid protection scheme is proposed which uses positive features of both travelling wave algorithm and impedance measurement technique in a single relay. The travelling wave information is used to achieve fast fault detection speeds while the impedance measurement is used to improve the reliability of the overall protection scheme. The thesis also investigates the possibility of accelerating the zone 2 protection of an impedance relay depending on the travelling wave information. The proposed algorithm has been verified through simulations of a practical three phase power system. The relaying functions have been tested using a laboratory prototype implemented on a Texas Instruments digital signal processor. The results indicate that the fault detection speed is improved while maintaining a high reliability level.
机译:为了电网的稳定性,重要的是借助高速保护系统快速清除高压传输线上的故障。传统的故障检测方法主要基于阻抗测量技术。在故障条件下,测得的阻抗与从继电器位置到故障点的距离成正比。为了计算阻抗,必须提取电压和电流信号的基频分量。此过程涉及的过滤具有固有的延迟。提高故障检测速度的任何尝试都会影响距离估计的准确性,从而影响保护方案的可靠性。故障产生的瞬变或行波信号会提供有关线路上可能出现的干扰的第一信息,因此可用于非常快速地检测故障。基于故障引发的行波的超高速距离保护方案使用波从中继点传播到故障并返回的时间来测量到故障的距离。然而,基于行波的保护方案存在可靠性问题,尽管具有快速的故障检测能力,但仍未被继电器工程师广泛接受。本文提出了一种混合保护方案,该方案在单个继电器中既具有行波算法又具有阻抗测量技术的优点。行波信息用于实现快速故障检测速度,而阻抗测量用于提高整体保护方案的可靠性。本文还研究了根据行波信息来加速阻抗继电器的2区保护的可能性。通过对实际三相电力系统的仿真,已验证了所提出的算法。中继功能已使用在德州仪器(TI)数字信号处理器上实现的实验室原型进行了测试。结果表明,提高了故障检测速度,同时保持了较高的可靠性。

著录项

  • 作者

    Pathirana, Vajira.;

  • 作者单位

    University of Manitoba (Canada).;

  • 授予单位 University of Manitoba (Canada).;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 188 p.
  • 总页数 188
  • 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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