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Steady-state voltage security assessment using symmetric eigenvalue analysis for weak area identification in large power transmission network.

机译:基于对称特征值分析的稳态电压安全性评估,用于大型输电网络的薄弱区域识别。

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摘要

The central focus of this thesis is on long-term static voltage stability analysis of large power transmission grid. This thesis work is a product of an attempt to comprehend the numerous researches that has been done over the years on voltage security assessment. Voltage stability is one of the essential components influencing the reliability of a power network. There are several Transmission planning and operation compliance standards pertaining to voltage criterion from NERC and Independent System Operators (ISO) directed toward the utilities to operate their grid within tight voltage limits. This requires the utility to perform comprehensive planning studies of the power system frequently for different load profiles like summer and winter - peak load and light load conditions taking into account several contingency scenarios. The humongous number of nodes and branches in a typical preset-day power network has increased the complexity of conventional voltage stability analysis methods like PV / QV curves. Initially, this study discusses various linear algebraic techniques used in steady-state power system analysis and presents the results on the simulations of IEEE test systems - 14 bus, 30 bus and 118 bus system. Later, it introduces an idea of performing a spectral (Symmetric Eigenvalue) analysis of the power system Jacobian and a rigorous testing of the same IEEE bus test systems was performed. Finally, it concludes by presenting a comparative result against other eigenvalue-based methods. The entire analysis has been performed by a combination of custom-written MATLAB programs, Python scripts and Siemens PTI PSS/E software for its one-line diagram capabilities.
机译:本文的重点是大型输电电网的长期静态电压稳定性分析。这项工作是对多年来对电压安全性评估所做的大量研究的尝试的产物。电压稳定性是影响电网可靠性的重要组成部分之一。 NERC和独立系统运营商(ISO)针对电压标准制定了多个与电压标准有关的传输计划和操作合规性标准,这些标准旨在使公用事业公司在严格的电压限制内运行电网。这就要求公用事业公司经常针对夏季和冬季等不同的负荷曲线对电力系统进行全面的规划研究,其中要考虑几种应急情况,以达到峰值负荷和轻负荷条件。在典型的预设日电网中,节点和分支的数量众多,这增加了传统电压稳定性分析方法(如PV / QV曲线)的复杂性。最初,本研究讨论了用于稳态电力系统分析的各种线性代数技术,并在IEEE测试系统(14总线,30总线和118总线系统)的仿真上给出了结果。稍后,它介绍了对电源系统Jacobian进行频谱(对称特征值)分析的想法,并对相同的IEEE总线测试系统进行了严格的测试。最后,通过与其他基于特征值的方法进行比较得出结论。完整的分析是通过结合编写的MATLAB程序,Python脚本和Siemens PTI PSS / E软件的单线图功能来执行的。

著录项

  • 作者单位

    The University of Wisconsin - Milwaukee.;

  • 授予单位 The University of Wisconsin - Milwaukee.;
  • 学科 Engineering General.;Engineering Electronics and Electrical.
  • 学位 M.S.
  • 年度 2013
  • 页码 68 p.
  • 总页数 68
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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