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Impacts of midpoint facts controllers on the coordination between generator phase backup protection and generator capability limits.

机译:中点事实控制器对发电机相位后备保护与发电机能力极限之间协调的影响。

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摘要

The thesis reports the results of comprehensive studies carried out to explore the impact of midpoint FACTS Controllers (STATCOM and SVC) on the generator distance phase backup protection in order to identify important issues that protection engineers need to consider when designing and setting a generator protection system. In addition, practical, feasible and simple solutions to mitigate the adverse impact of midpoint FACTS Controllers on the generator distance phase backup protection are explored.;The results of these studies show that midpoint FACTS Controllers have an adverse effect on the generator distance phase backup protection. This adverse effect, which can be in the form of underreach, overreach or a time delay, varies according to the fault type, fault location and generator loading. Moreover, it has been found that the adverse effect of the midpoint FACTS Controllers extends to affect the coordination between the generator distance phase backup protection and the generator steady-state overexcited capability limit.;The Support Vector Machines classification technique is proposed as a replacement for the existing generator distance phase backup protection relay in order to alleviate potential problems. It has been demonstrated that this technique is a very promising solution, as it is fast, reliable and has a high performance efficiency. This will result in enhancing the coordination between the generator phase backup protection and the generator steady-state overexcited capability limit in the presence of midpoint FACTS Controllers.;The thesis also presents the results of investigations carried out to explore the impact of the generator distance phase backup protection relay on the generator overexcitation thermal capability. The results of these investigations reveal that with the relay settings according to the current standards, the generator is over-protected and the generator distance phase backup protection relay restricts the generator overexcitation thermal capability during system disturbances. This restriction does not allow the supply of the maximum reactive power of the generating unit during such events. The restriction on the generator overexcitation thermal capability caused by the generator distance phase backup protection relay highlights the necessity to revise the relay settings. The proposed solution in this thesis is to reduce the generator distance phase backup protection relay reach in order to provide secure performance during system disturbances.
机译:本文报告了进行综合研究的结果,以探索中点FACTS控制器(STATCOM和SVC)对发电机距离相位备用保护的影响,从而确定保护工程师在设计和设置发电机保护系统时需要考虑的重要问题。 。此外,探索了减轻中点FACTS控制器对发电机距离相位后备保护的不利影响的实用,可行和简单的解决方案;这些研究结果表明,中点FACTS控制器对发电机距离相后备保护有不利影响。这种不良影响可能会以故障原因,故障原因和发电机负载的形式发生变化,可能是超范围,超范围或时间延迟。此外,已经发现中点FACTS控制器的不利影响扩展到影响发电机距离相位后备保护与发电机稳态过励能力极限之间的协调。;提出了支持向量机分类技术来替代现有的发电机距离相后备保护继电器,以减轻潜在的问题。已经证明该技术是一种非常有前途的解决方案,因为它快速,可靠并且具有高性能。在存在中点FACTS控制器的情况下,这将增强发电机相位后备保护与发电机稳态过励磁能力极限之间的协调性。论文还提出了研究结果,以探索发电机距离相位的影响备用保护继电器对发电机的过励磁能力。这些调查的结果表明,按照当前标准对继电器进行设置,发电机会受到过度保护,并且发电机距离相后备保护继电器会​​在系统出现干扰时限制发电机的过励磁热容量。这种限制不允许在此类事件期间提供发电机组的最大无功功率。发电机距离相位后备保护继电器对发电机过励磁能力的限制突出了修改继电器设置的必要性。本文提出的解决方案是减小发电机相间保护继电器的距离,以在系统出现干扰时提供安全的性能。

著录项

  • 作者单位

    The University of Saskatchewan (Canada).;

  • 授予单位 The University of Saskatchewan (Canada).;
  • 学科 Engineering Electronics and Electrical.;Engineering Industrial.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 158 p.
  • 总页数 158
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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