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Coordinated power control of unified power flow controller and its application for enhancing dynamic power system performance.

机译:统一潮流控制器的协调功率控制及其在增强动态电力系统性能中的应用。

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摘要

This thesis focuses on reporting my research study on a problem area relating to use of Unified Power Flow Controller (UPFC) for coordinating load flow in power systems so as to enhance their static and dynamic performance by having more secure and economical operation and higher dynamic stability margin. UPFC is considered as one of the most promising devices for implementing the Flexible AC Transmission System (FACTS) concept. Although development of UPFC is still on an infant stage, probing into its impact on power system operation is actively pursued and significant effort has been devoted to put it forward as a practical FACTS device and as a challenging academic research object. In order to consider UPFC as a basic power system element, it has to be involved in associated load flow computation essentially for power system control analysis and operational planning. An up front problem for design engineers is therefore pointing to a need to modify existing load flow program so as to accommodate interactions of UPFCs. A lot of research output start coming out but their computational efficiency are not high enough. In this regard, I propose two methods to perform the UPFC embedded load flow calculation to cater for two different types of application. The first one caters for analyzing direct control of load flow on transmission lines with embedded UPFCs. In this type of problem, active and reactive power of the lines, as well as the magnitude of bus voltages are priori given. The load flow solution can then be obtained and enables the UPFC parameters to be determined with a significantly improved computational efficiency. The second one works in contrary to the first one by which parameters of UPFCs are given before hand and the load flow calculation is performed for conforming a feasible operation. It can be regarded as an indirect load flow control calculation which is useful in planning stage for incorporating UPFC into existing system and/or carrying out various optimization processes. The next major contribution of my research project reported on the thesis relates to determination of optimal location of UPFCs which is practically important when coming to decision-making for installing and implementing the devices. As an extension on the use of the load flow calculation model, I develop an optimizing technique for identifying optimal location of UPFCs using Augmented Lagrange Multipliers method. At last but not the least, I develop a dynamic model of UPFCs embedded power system for which dynamic performance analysis is carried out. Coordinated power control strategy is derived to show that UPFC can play an important role in mitigating power system oscillations and enhance dynamic stability margin of the system.
机译:本文的重点是报告我对与使用统一潮流控制器(UPFC)协调电力系统中的潮流有关的问题领域的研究,从而通过具有更安全,经济的运行方式和更高的动态稳定性来提高其静态和动态性能。余量。 UPFC被认为是实现灵活交流传输系统(FACTS)概念的最有希望的设备之一。尽管UPFC的发展仍处于起步阶段,但仍在积极探索其对电力系统运行的影响,并已做出巨大的努力来将其作为实用的FACTS装置和具有挑战性的学术研究对象提出。为了将UPFC视为电力系统的基本要素,必须将UPFC纳入相关的潮流计算中,以进行电力系统控制分析和运行规划。因此,设计工程师面临的一个首要问题是需要修改现有的潮流程序,以适应UPFC的相互作用。许多研究成果开始出现,但是它们的计算效率不够高。在这方面,我提出了两种方法来执行UPFC嵌入式潮流计算,以适应两种不同类型的应用。第一个解决方案是分析具有嵌入式UPFC的传输线上的潮流直接控制。在这种类型的问题中,优先给出线路的有功功率和无功功率以及总线电压的大小。然后可以获取潮流解决方案,并能够以显着提高的计算效率确定UPFC参数。第二个与第一个相反,第一个通过事先给出UPFC的参数,并进行潮流计算以符合可行的操作。可以将其视为间接潮流控制计算,在计划阶段将UPFC合并到现有系统和/或执行各种优化过程中很有用。本论文所报告的我的研究项目的下一个主要贡献是确定UPFC的最佳位置,这在进行安装和实施设备的决策时非常重要。作为使用潮流计算模型的扩展,我开发了一种优化技术,可使用增强型拉格朗日乘数法来确定UPFC的最佳位置。最后但并非最不重要的一点是,我开发了UPFC嵌入式电源系统的动态模型,并对其进行了动态性能分析。推导了协调的功率控制策略,以表明UPFC可以在减轻电力系统振荡和增强系统动态稳定性裕度方面发挥重要作用。

著录项

  • 作者

    Fang, Wanliang.;

  • 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 Energy.; Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 1999
  • 页码 155 p.
  • 总页数 155
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 能源与动力工程;无线电电子学、电信技术;
  • 关键词

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