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Voltage stability analysis in the new deregulated environment.

机译:在新的放松管制的环境中进行电压稳定性分析。

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摘要

Nowadays, a significant portion of the power industry is under deregulation. Under this new circumstance, network security analysis is more critical and more difficult. One of the most important issues in network security analysis is voltage stability analysis. Due to the expected higher utilization of equipment induced by competition in a power market that covers bigger power systems, this issue is increasingly acute after deregulation. In this dissertation, some selected topics of voltage stability analysis are covered.; In the first part, after a brief review of general concepts of continuation power flow (CPF), investigations on various matrix analysis techniques to improve the speed of CPF calculation for large systems are reported. Based on these improvements, a new CPF algorithm is proposed. This new method is then tested by an inter-area transaction in a large inter-connected power system.; In the second part, the Arnoldi algorithm, the best method to find a few minimum singular values for a large sparse matrix, is introduced into the modal analysis for the first time. This new modal analysis is applied to the estimation of the point of voltage collapse and contingency evaluation in voltage security assessment. Simulations show that the new method is very efficient.; In the third part, after transient voltage stability component models are investigated systematically, a novel system model for transient voltage stability analysis, which is a logical-algebraic-differential-difference equation (LADDE), is offered. As an example, TCSC (Thyristor controlled series capacitors) is addressed as a transient voltage stabilizing controller. After a TCSC transient voltage stability model is outlined, a new TCSC controller is proposed to enhance both fault related and load increasing related transient voltage stability. Its ability is proven by the simulation.
机译:如今,很大一部分电力行业正在放松管制。在这种新情况下,网络安全分析变得更加关键和困难。网络安全分析中最重要的问题之一是电压稳定性分析。由于在覆盖更大的电力系统的电力市场中竞争所引起的设备预期利用率更高,因此在放松管制之后这个问题变得越来越严重。本文涵盖了电压稳定性分析的一些选定主题。在第一部分中,在简要回顾了持续功率流(CPF)的一般概念之后,报告了对各种矩阵分析技术的研究,以提高大型系统的CPF计算速度。基于这些改进,提出了一种新的CPF算法。然后,通过大型互连电力系统中的区域间事务来测试此新方法。在第二部分中,首次将Arnoldi算法(一种为大型稀疏矩阵找到几个最小奇异值的最佳方法)引入模态分析。这种新的模态分析被应用于电压崩溃点的估计和电压安全评估中的应急评估。仿真表明,该新方法非常有效。第三部分,系统研究了暂态电压稳定性分量模型后,提出了一种新的暂态电压稳定性分析系统模型,即逻辑代数-微分-差分方程(LADDE)。例如,TCSC(晶闸管控制串联电容器)作为瞬态电压稳定控制器。概述了TCSC瞬态电压稳定性模型后,提出了一种新的TCSC控制器,以增强故障相关和负载增加相关的瞬态电压稳定性。仿真证明了其能力。

著录项

  • 作者

    Zhu, Tong.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Engineering Electronics and Electrical.; Energy.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 192 p.
  • 总页数 192
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;能源与动力工程;
  • 关键词

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