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Coordinated static and dynamic reactive power planning against power system voltage stability related problems.

机译:针对电力系统电压稳定性相关问题的静态和动态无功功率协调计划。

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摘要

Power System, over the many years, has undergone dramatic revolution both in technological as well as structural aspects. With the ongoing growth of the electric utility industry, including deregulation in many countries; numerous changes are continuously being introduced to a once predictable system. In an attempt to maximally use the transmission system capacities for economic transfers, transmission systems are being pushed closer to their stability and thermal limits, with voltage instability becoming a major limiting factor. Insufficient reactive power support affects the reliable operation of electric power systems leading to voltage collapses as observed by the recent 2003 blackout. Among the many available solution options, installation of reactive power control devices such as MSCs, FACTS devices etc seem more viable. This is a typical long term planning problem that needs to consider both steady state as well dynamic condition of the power system after severe contingencies and use better informative indices for the planning process.;A mixed integer programming based algorithm is made use of in this work to develop a comprehensive tool to perform a coordinated planning of static and dynamic reactive power control devices while satisfying the performance requirements of voltage stability margin and transient voltage dip. The systematic planning procedure is illustrated on a large scale case study. The effectiveness of the planning algorithm is demonstrated using two separate planning problems, one where steady state planning is done exclusively against static voltage stability problems, and the other where a coordinated steady state and dynamic Var planning problem is solved.;The results of this work show the effectiveness of the developed planning tool to find a low cost optimal reactive power allocation solution to enable higher real power transfers and improve voltage stability. We envision the method developed will be a research grade tool for planning reactive control devices against voltage instability and will provide system planners a proper guide to find viable and economical planning solutions.
机译:多年来,电力系统在技术和结构方面都经历了巨大的革命。随着电力工业的不断发展,包括许多国家放松管制;许多变化不断地引入到曾经可以预测的系统中。为了最大程度地利用传输系统的容量进行经济传输,正在将传输系统推向更接近其稳定性和热极限的范围,电压不稳定成为主要的限制因素。无功功率支持不足会影响电力系统的可靠运行,导致最近的2003年停电所导致的电压崩溃。在许多可用的解决方案选项中,无功功率控制设备(例如MSC,FACTS设备等)的安装似乎更可行。这是一个典型的长期计划问题,需要在严重的突发事件后既要考虑电力系统的稳态也要考虑动态状况,并在计划过程中使用更好的信息指标。;在此工作中使用了基于混合整数规划的算法开发一个综合工具,以对静态和动态无功功率控制设备进行协调规划,同时满足电压稳定裕度和瞬态电压骤降的性能要求。在大规模的案例研究中说明了系统的计划程序。通过两个独立的计划问题证明了该计划算法的有效性,一个问题是专门针对静态电压稳定性问题进行稳态计划,另一个解决了协调的稳态和动态Var计划问题。展示了开发的计划工具寻找低成本最佳无功功率分配解决方案以实现更高的有功功率传输并改善电压稳定性的有效性。我们认为开发的方法将是用于研究针对电压不稳定性的无功控制设备进行规划的研究级工具,并将为系统规划人员提供适当的指南,以找到可行且经济的规划解决方案。

著录项

  • 作者

    Krishnan, Venkat Kumar.;

  • 作者单位

    Iowa State University.;

  • 授予单位 Iowa State University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 M.S.
  • 年度 2007
  • 页码 119 p.
  • 总页数 119
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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