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Power systems frequency dynamic monitoring system design and applications.

机译:电力系统频率动态监控系统的设计与应用。

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摘要

Recent large-scale blackouts revealed that power systems around the world are far from the stability and reliability requirement as they suppose to be. The post-event analysis clarifies that one major reason of the interconnection blackout is lack of wide area information. Frequency dynamics is one of the most important parameters of an electrical power system. In order to understand power system dynamics effectively, accurately measured wide-area frequency is needed. The idea of building an Internet based real-time GPS synchronized wide area Frequency Monitoring Network (FNET) was proposed to provide the imperative dynamic information for the large-scale power grids and the implementation of FNET has made the synchronized observations of the entire US power network possible for the first time. The FNET system consists of Frequency Disturbance Recorders (FDR), which work as the sensor devices to measure the real-time frequency at 110V single-phase power outlets, and an Information Management System (IMS) to work as a central server to process the frequency data. The device comparison between FDR and commercial PMU (Phasor Measurement Unit) demonstrate the advantage of FNET. The web visualization tools make the frequency data available for the authorized users to browse through Internet.;The research work addresses some preliminary observations and analyses with the field-measured frequency information from FNET. The original algorithms based on the frequency response characteristic are designed to process event detection, localization and unbalanced power estimation during frequency disturbances. The analysis of historical cases illustrate that these algorithms can be employed in real-time level to provide early alarm of abnormal frequency change to the system operator. The further application is to develop an adaptive under frequency load shedding scheme with the processed information feed in to prevent further frequency decline in power systems after disturbances causing dangerous imbalance between the load and generation.
机译:最近的大规模停电表明,世界各地的电力系统都远远没有达到其预期的稳定性和可靠性要求。事件后分析表明,互连停电的主要原因之一是缺乏广域信息。频率动力学是电力系统最重要的参数之一。为了有效地了解电力系统动态,需要精确测量的广域频率。提出了建立基于Internet的实时GPS同步广域频率监测网络(FNET)的想法,以为大型电网提供必要的动态信息,并且FNET的实施已对整个美国电力进行了同步观测。首次联网。 FNET系统由频率扰动记录仪(FDR)和信息管理系统(IMS)组成,该传感器用作测量110V单相电源插座上实时频率的传感器设备,而信息管理系统(IMS)作为中央服务器来处理频率数据。 FDR与商用PMU(相量测量单元)之间的设备比较证明了FNET的优势。 Web可视化工具使频率数据可供授权用户通过Internet浏览。;研究工作利用来自FNET的现场测量的频率信息解决了一些初步的观察和分析。基于频率响应特性的原始算法旨在处理频率扰动期间的事件检测,定位和不平衡功率估计。对历史案例的分析表明,这些算法可以实时使用,以向系统操作员提供异常频率变化的早期警报。进一步的应用是开发一种自适应的欠频减载方案,其中将经过处理的信息输入,以防止在造成负载与发电之间危险的不平衡的干扰之后电力系统中的进一步频率下降。

著录项

  • 作者

    Zhong, Zhian.;

  • 作者单位

    Virginia Polytechnic Institute and State University.;

  • 授予单位 Virginia Polytechnic Institute and State University.;
  • 学科 Geotechnology.;Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 211 p.
  • 总页数 211
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:42:43

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