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EMTP-RV simulation of a chain link STATCOM.

机译:链链接STATCOM的EMTP-RV模拟。

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摘要

An advanced static VAr compensator (ASVC), using a voltage-source-converter (VSC), popularly known as a static synchronous compensator (STATCOM), is generally acknowledged as the next-generation reactive power controller in power systems. Its mode of operation is analogous to that of a rotating synchronous condenser and it provides dynamic voltage compensation, increased transient stability and damping for the power system. Several STATCOMs, based on high power semiconductor switches (e.g. Gate Turn Off thyristors, GTOs or Insulated Gate Bipolar Transistors, IGBTs) and a special zigzag transformer have been put into operation. These STATCOMs have advantages over conventional static VAr compensators (SVCs) of lower harmonic generation, improved performance and a smaller reactor size. However, the zigzag transformers used in these STATCOMs are bulky, expensive and as yet unreliable. An alternative method to eliminate the zigzag transformer and to increase the STATCOM rating with a corresponding reduction in harmonics is to use a multilevel converter, which produces a 'multi-stepped' output voltage waveform in a close approximation to a sine wave.; A recent addition to the multilevel converter based STATCOM family has been obtained by connecting a number of VSCs in series on the ac side of the system forming a 'chain' per phase. Each VSC is a 1-phase, full-bridge converter and forms a 'link' of a 'chain'. This STATCOM configuration is referred to as a 'Chain Link STATCOM' (CLS). In this thesis, a GTO is used as a switch for the CLS. However, any other high power semiconductor switch (e.g. IGBT) may also be used instead. Each GTO of the CLS, is switched on/off only once per cycle of the fundamental frequency by employing a sinusoidal pulse width modulation (SPWM) technique. Approximate models of a 3-phase CLS using dq-transformation are derived to design two cascaded controllers for controlling reactive current and ac voltage to stabilize the power system voltage at the point of common coupling (PCC). A novel technique, called the rotated gate signal pattern (RGSP), is used for balancing the voltages of the link do capacitors of the VSC. The performance investigation of the CLS system when used in a radial line transmission system is carried out under steady- and transient-state operating conditions by means of the simulation package EMTP-RV.; Index terms. Chain link STATCOM, VSC, SVC, STATCOM, FACTS, EMTP-RV.
机译:使用电压源转换器(VSC)的先进的静态VAr补偿器(ASVC),通常被称为静态同步补偿器(STATCOM),通常被认为是电力系统中的下一代无功功率控制器。它的操作模式类似于旋转同步电容器的操作模式,并且它为电源系统提供动态电压补偿,更高的瞬态稳定性和阻尼。几种基于大功率半导体开关的STATCOM(例如,栅极关断晶闸管,GTO或绝缘栅双极晶体管,IGBT)和一种特殊的之字形变压器已经投入运行。与传统的静态VAr补偿器(SVC)相比,这些STATCOM具有更低的谐波产生,更高的性能和更小的电抗器尺寸。但是,这些STATCOM中使用的之字形变压器体积大,价格昂贵,而且不可靠。消除锯齿形变压器并通过降低谐波来增加STATCOM额定值的另一种方法是使用多电平转换器,该转换器会产生一个“多步”输出电压波形,非常接近正弦波。通过将多个VSC串联连接在系统的ac侧,形成每相一个“链”,已经获得了基于STATCOM系列多电平转换器的最新功能。每个VSC是1相全桥转换器,并形成“链”的“链接”。此STATCOM配置称为“链链接STATCOM”(CLS)。本文将GTO用作CLS的交换机。但是,也可以使用其他任何大功率半导体开关(例如IGBT)。通过使用正弦脉冲宽度调制(SPWM)技术,每个CLS的GTO在基本频率的每个周期仅打开/关闭一次。推导了使用dq变换的三相CLS的近似模型,以设计两个级联控制器,以控制无功电流和交流电压,以在公共耦合点(PCC)稳定电力系统电压。一种称为旋转门信号模式(RGSP)的新颖技术用于平衡VSC的链接电容器的电压。借助仿真软件包EMTP-RV,在稳态和瞬态运行条件下对CLS系统用于径向线传输系统时的性能进行了研究。索引词。链链接STATCOM,VSC,SVC,ST​​ATCOM,FACTS,EMTP-RV。

著录项

  • 作者

    Shah, Nikunj Mahesh.;

  • 作者单位

    Concordia University (Canada).;

  • 授予单位 Concordia University (Canada).;
  • 学科 Engineering Electronics and Electrical.
  • 学位 M.A.Sc.
  • 年度 2007
  • 页码 117 p.
  • 总页数 117
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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