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A methodology to assess and rank the effects of hidden failures in protection schemes based on regions of vulnerability and index of severity.

机译:一种基于脆弱性区域和严重性指标来评估保护方案中隐藏故障的影响并对其进行排名的方法。

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摘要

Wide-area disturbances are power outages occurring over large geographical regions that dramatically affect the power system reliability, causing interruptions of the electric supply to residential, commercial, and industrial users. Historically, wide-area disturbances have greatly affected societies.; Virginia Tech directed a research project related to the causes of the major disturbances in electric power systems. Research results showed that the role of the power system's protection schemes in the wide-area disturbances is critical. Incorrect operations of power system's protection schemes have contributed to a spread of the disturbances. This research defined hidden failures of protection schemes and showed that these kinds of failures have contributed in the degradation of 70–80 percent of the wide-area disturbances. During a wide-area disturbance analysis, it was found that hidden failures in protection schemes caused the disconnection of power system elements in an incorrect and undesirable manner contributing to the disturbance degradation.; This dissertation presents a methodology to assess and rank the effects of unwanted disconnections caused by hidden failures based on Regions of Vulnerability and index of severity in the protection schemes.; The developed methodology for the evaluation of the Region of Vulnerability found that the indicator that most accurately reflects the relationship of the Region of Vulnerability with the single line diagram is kilometers. For the representation of the Region of Vulnerability in the power system, we found segments in the transmission line in which the occurrence of faults do make the relay to operate, producing the unwanted disconnection caused by hidden failure. The results in the test system show that the infeed currents restrain the Region of Vulnerability from spreading along power system elements.; Finally the methodology to compute the index of severity is developed. The index of severity has the objective of ranking the protection schemes, considers the dynamics of the protection schemes, and evaluates the overall disturbance consequence under the static and dynamic perspectives.
机译:广域干扰是指发生在较大地理区域的断电,这会严重影响电力系统的可靠性,从而导致住宅,商业和工业用户的电源中断。从历史上看,广域干扰极大地影响了社会。弗吉尼亚理工大学(Virginia Tech)指导了一项与电力系统重大扰动原因相关的研究项目。研究结果表明,电力系统保护方案在广域干扰中的作用至关重要。电力系统保护方案的错误操作导致了干扰的扩散。这项研究定义了保护方案的隐藏故障,并表明这些故障导致了70%至80%的广域干扰的恶化。在广域干扰分析中,发现保护方案中的隐藏故障以不正确和不希望的方式导致电力系统元件的断开,从而导致干扰恶化。本文提出了一种方法,可以根据脆弱性区域和保护方案中的严重性指标,对隐性故障造成的不必要的断线影响进行评估和排序。评估脆弱性区域的已开发方法发现,最能准确反映脆弱性区域与单线图之间关系的指标是千米。为了表示电力系统中的脆弱区域,我们在传输线中发现了一些段,故障的发生确实使继电器工作,从而产生了由隐性故障引起的不必要的断开。测试系统中的结果表明,馈入电流抑制了脆弱区域沿电力系统元件的扩散。最后,开发了计算严重性指标的方法。严重性指标的目的是对保护方案进行排名,考虑保护方案的动态性,并在静态和动态角度下评估总体干扰后果。

著录项

  • 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 2003
  • 页码 223 p.
  • 总页数 223
  • 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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