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Optimal power system operation and control incorporating FACTS devices.

机译:结合了FACTS设备的最佳电力系统运行和控制。

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摘要

Flexible AC Transmission Systems (FACTS) technology provides huge potential opportunities for improved transmission productivity. However, FACTS technology also produces technical problems which need to be addressed before the benefits of FACTS devices may be fully exploited in operation. The steady-state optimization related operation and control functions of FACTS devices in energy management systems (EMS) are the main thrust of research work to be studied and analyzed in this project. The static representations of the four main typical FACTS devices are first developed. An extended Newton-Raphson (N-R) power flow method is proposed to include the four typical FACTS devices as a basic tool in power system operation and control. An extended DC power flow method is developed as the basic tool for the analysis. A two-stage linear programming based contingency-constrained optimal active power flow algorithm is developed to incorporate the effects of three typical FACTS devices and the specified needs for power flow controls using the extended DC power flow method. This algorithm decomposes the problem into two subproblems' iteration to achieve convergency with efficiency. The first subproblem is solved by a sensitivity matrix based method, while the second subproblem is solved as optimal power flow (OPF) problem using LP based OPF method. This method has the advantage that it can be easily incorporated into present OPF function in EMS and would reduce software development and maintenance costs. A new, innovative decoupled OPF method is also developed to include the effects of four typical FACTS devices and the specified needs for power flow controls using the extended N-R power flow equation. In this method, the FACTS related control variables are classified into three types. They are active power related variables, reactive power related variables and active and reactive power related variables. The first and second types are implemented in active power and reactive power OPF respectively. The third type of variables would be optimized in both APOPF and RPOPF subproblems. A special technique is developed to improve the overall convergency and reliability of this OPF approach. Linear programming based OPF method is extended to solve APOPF while successive quadratic programming based method is developed to solve RPOPF. Research results and analysis are presented to show the applicability and efficiency of the method in large scale power systems operation.*; *Originally published in DAI  Vol. 59, No. 10. Reprinted here with corrected author name.
机译:灵活的交流传输系统(FACTS)技术为提高传输效率提供了巨大的潜在机会。但是,FACTS技术还会产生一些技术问题,在运行中充分利用FACTS设备的好处之前,必须解决这些技术问题。能源管理系统(EMS)中FACTS装置与稳态优化相关的操作和控制功能是本项目要研究和分析的主要工作重点。首先开发了四个主要典型FACTS设备的静态表示。提出了一种扩展的牛顿-拉夫逊(N-R)潮流方法,该方法将四种典型的FACTS设备作为电力系统运行和控制的基本工具。开发了扩展的直流潮流方法作为分析的基本工具。开发了一种基于线性约束的两阶段线性规划的最优有功潮流算法,以结合三种典型FACTS设备的效果以及使用扩展的直流潮流方法进行潮流控制的特定需求。该算法将问题分解为两个子问题的迭代,以实现收敛效率。第一个子问题通过基于灵敏度矩阵的方法解决,而第二个子问题使用基于LP的OPF方法解决为最优潮流(OPF)问题。此方法的优点是可以轻松地将其合并到EMS中的当前OPF功能中,并且可以减少软件开发和维护成本。还开发了一种新的,创新的去耦OPF方法,以包括四种典型FACTS器件的效果以及使用扩展的N-R潮流方程式进行的潮流控制的特定需求。在这种方法中,与FACTS相关的控制变量分为三种类型。它们是有功功率相关变量,无功功率相关变量以及有功功率和无功功率相关变量。第一和第二类型分别以有功功率和无功功率OPF实现。第三类变量将在APOPF和RPOPF子问题中均得到优化。开发了一种特殊技术来提高此OPF方法的总体收敛性和可靠性。扩展了基于线性规划的OPF方法来求解APOPF,同时开发了基于连续二次规划的方法来求解RPOPF。研究结果和分析表明该方法在大规模电力系统运行中的适用性和有效性。 *最初发表于DAI Vol。 59,第10号。此处以正确的作者姓名转载。

著录项

  • 作者

    Ge, Shaoyun.;

  • 作者单位

    Hong Kong Polytechnic (People's Republic of China).;

  • 授予单位 Hong Kong Polytechnic (People's Republic of China).;
  • 学科 Engineering Electronics and Electrical.; Energy.
  • 学位 Ph.D.
  • 年度 1998
  • 页码 179 p.
  • 总页数 179
  • 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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