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Implementation of Pilot Protection System for Large Scale Distribution System like The Future Renewable Electric Energy Distribution Management Project.

机译:实施大型配电系统的先导保护系统,例如未来可再生能源配电管理项目。

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摘要

A robust, fast and accurate protection system based on pilot protection concept was developed previously and a few alterations in that algorithm were made to make it faster and more reliable and then was applied to smart distribution grids to verify the results for it. The new 10 sample window method was adapted into the pilot protection program and its performance for the test bed system operation was tabulated. Following that the system comparison between the hardware results for the same algorithm and the simulation results were compared. The development of the dual slope percentage differential method, its comparison with the 10 sample average window pilot protection system and the effects of CT saturation on the pilot protection system are also shown in this thesis. The implementation of the 10 sample average window pilot protection system is done to multiple distribution grids like Green Hub v4.3, IEEE 34, LSSS loop and modified LSSS loop. Case studies of these multi-terminal model are presented, and the results are also shown in this thesis. The result obtained shows that the new algorithm for the previously proposed protection system successfully identifies fault on the test bed and the results for both hardware and software simulations match and the response time is approximately less than quarter of a cycle which is fast as compared to the present commercial protection system and satisfies the FREEDM system requirement.
机译:先前开发了一种基于先导保护概念的健壮,快速且准确的保护系统,并对算法进行了一些改动以使其更快,更可靠,然后应用于智能配电网以验证其结果。将新的10个样本窗口方法应用于飞行员保护程序,并将其在测试台系统操作中的性能制成表格。然后,比较了相同算法的硬件结果和仿真结果之间的系统比较。本文还介绍了双斜率百分比微分法的发展,与10个样本平均窗口飞行员保护系统的比较以及CT饱和度对飞行员保护系统的影响。 10个样本平均窗口飞行员保护系统的实现是针对多个分布网格(例如Green Hub v4.3,IEEE 34,LSSS环路和修改的LSSS环路)完成的。给出了这些多终端模型的案例研究,并在本文中也显示了结果。获得的结果表明,针对先前提出的保护系统的新算法成功地识别了测试台上的故障,并且硬件和软件仿真的结果均匹配,并且响应时间大约少于周期的四分之一,与目前的商业保护系统并满足FREEDM系统要求。

著录项

  • 作者

    Iyengar, Varun.;

  • 作者单位

    Arizona State University.;

  • 授予单位 Arizona State University.;
  • 学科 Engineering Electronics and Electrical.;Energy.;Alternative Energy.
  • 学位 M.S.
  • 年度 2014
  • 页码 186 p.
  • 总页数 186
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:53:16

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