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Wide Area Power System Islanding Detection, Classification and State Evaluation Algorithm.

机译:广域电力系统孤岛检测,分类和状态评估算法。

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摘要

An islanded power system indicates a geographical and logical detach between a portion of a power system and the major grid, and often accompanies with the loss of system observability. A power system islanding contingency could be one of the most severe consequences of wide-area system failures. It might result in enormous losses to both the power utilities and the consumers. Even those relatively small and stable islanding events may largely disturb the consumers' normal operation in the island. On the other hand, the power consumption in the U.S. has been largely increasing since 1970s with the respect to the bloom of global economy and mass manufacturing, and the daily increased requirements from the modern customers. Along with the extreme weather and natural disaster factors, the century old U.S. power grid is under severely tests for potential islanding disturbances. After 1980s, the invention of synchronized phasor measurement units (PMU) has broadened the horizon for system monitoring, control and protection. Its real time feature and reliable measurements has made possible many online system schemes. The recent revolution of computers and electronic devices enables the implementation of complex methods (such as data mining methods) requiring large databases in power system analysis. The proposed method presented in this dissertation is primarily focused on two studies: one power system islanding contingency detection, identification, classification and state evaluation algorithm using a decision tree algorithm and topology approach, and its application in Dominion Virginia power system; and one optimal PMU placement strategy using a binary integral programming algorithm with the consideration of system islanding and redundancy issues.
机译:孤岛式电力系统表示电力系统的一部分与主要电网之间在地理和逻辑上的分离,并且常常伴随着系统可观察性的丧失。电力系统孤岛事故可能是广域系统故障的最严重后果之一。这可能会给电力公司和用户造成巨大损失。即使是那些相对较小且稳定的离岛事件,也可能在很大程度上干扰消费者在岛上的正常运行。另一方面,从1970年代开始,由于全球经济的蓬勃发展和大规模生产以及现代客户的每日需求增加,美国的功耗已大大增加。除了极端的天气和自然灾害因素外,百年历史的美国电网也正在经受潜在孤岛干扰的严峻考验。 1980年代以后,同步相量测量单元(PMU)的发明拓宽了系统监视,控制和保护的视野。它的实时功能和可靠的测量使许多在线系统方案成为可能。计算机和电子设备的最新革命使得能够实现在电力系统分析中需要大型数据库的复杂方法(例如数据挖掘方法)的实现。本文提出的方法主要集中在两项研究上:一是采用决策树算法和拓扑方法的电力系统孤岛应急检测,识别,分类和状态评估算法,及其在Dominion Virginia电力系统中的应用。考虑到系统孤岛和冗余问题,采用二进制积分编程算法的一种最佳PMU放置策略。

著录项

  • 作者

    Sun, Rui.;

  • 作者单位

    Virginia Polytechnic Institute and State University.;

  • 授予单位 Virginia Polytechnic Institute and State University.;
  • 学科 Electrical engineering.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 181 p.
  • 总页数 181
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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