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A microprocessor-based system for protecting busbars.

机译:基于微处理器的系统,用于保护母线。

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摘要

Advancements in digital technology have led to the development of microprocessor-based relays. However, most of these relays use algorithms similar in principle to their electromechanical counterparts. Also, busbar protection using microprocessor-based relays has not received adequate attention unlike other power system components. Few algorithms proposed for protecting busbars lack inherent immunity to current transformer (ct) saturation. They achieve stability by using additional measures, such as, using special circuitry, multiple algorithms and changing the restraint factor, which are not likely to be effective during severe ct saturation. The impact of ct ratio-mismatch is countered by using percentage-bias characteristics that reduces the sensitivity of the relay.; This thesis presents a new technique for protecting busbars. The technique uses positive-sequence and negative-sequence models of the power system in a fault-detection algorithm. While phase voltages and currents are used to detect faults, parameters of the power system are not used. Only the arguments of the positive-sequence and negative-sequence impedances computed by the relay are used to make trip decisions.; The performance of the technique was investigated for a variety of operating conditions and for several busbar configurations. Data generated by emtp simulations of model power systems were used in the investigations. The results verify that the proposed technique is able to distinguish faults in a busbar protection zone from those outside the zone correctly. Additionally, its stability during ct saturation, immunity to ct ratio-mismatch and applicability, without any modifcations, to busbars of different configurations have been established.; An analysis of the performance of the proposed technique during ct saturation and ratio-mismatch conditions is presented. The effect of various parameters, such as, presence of d.c. offset in the currents, mild and severe saturation of the cts, different sampling frequencies and the impact of the size of data-windows on the estimates of the current phasors have been included. The analysis indicates that the technique is stable during ct saturation and inherently immune to ct ratio-mismatch.; The proposed technique was implemented using a general purpose relay hardware. The hardware and software constituents of the prototype, the procedure for testing these relays by using a playback simulator and selected test results are presented in this thesis.
机译:数字技术的进步导致了基于微处理器的继电器的发展。但是,这些继电器中的大多数都使用原理上与机电产品相似的算法。另外,与其他电源系统组件不同,使用基于微处理器的继电器进行母线保护的注意也不够。提出的用于保护母线的算法很少缺乏对电流互感器(ct)饱和的固有抗扰性。它们通过使用其他措施(例如使用特殊电路,多种算法和更改约束因数)来实现稳定性,这在严重的ct饱和期间不太可能有效。 ct比率不匹配的影响通过使用百分比偏置特性来抵消,该特性会降低继电器的灵敏度。本文提出了一种保护母线的新技术。该技术在故障检测算法中使用电力系统的正序和负序模型。虽然使用相电压和电流来检测故障,但不使用电力系统的参数。仅由继电器计算出的正序阻抗和负序阻抗的参数可用于跳闸决策。针对各种操作条件和几种母线配置,研究了该技术的性能。在调查中使用了通过模型电源系统的emtp仿真生成的数据。结果证明,所提出的技术能够正确地区分母线保护区内的故障。此外,已经确定了其在ct饱和期间的稳定性,对ct比率不匹配的抗扰性以及在不作任何修改的情况下对不同配置的母线的适用性。提出了在ct饱和和比率不匹配条件下所提出的技术的性能分析。各种参数的影响,例如直流电的存在。包括电流偏移,cts的轻度和严重饱和度,不同的采样频率以及数据窗口大小对电流相量估计的影响。分析表明,该技术在ct饱和期间是稳定的,并且固有地不受ct比率不匹配的影响。所提出的技术是使用通用中继硬件实现的。本文介绍了原型的硬件和软件组成,使用回放模拟器测试这些继电器的过程以及所选的测试结果。

著录项

  • 作者

    Gill, Harjeet Singh.;

  • 作者单位

    The University of Saskatchewan (Canada).;

  • 授予单位 The University of Saskatchewan (Canada).;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2000
  • 页码 261 p.
  • 总页数 261
  • 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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