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Cascaded two-level inverter-based multilevel static VAr compensator using 12-sided polygonal voltage space vector modulation

机译:基于12面多边形电压空间矢量调制的基于级联两电平逆变器的多电平静态VAr补偿器

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摘要

A static VAr compensation scheme using 12-sided polygonal voltage space vectors for high power application is proposed in this study. Using the polygonal voltage space vectors, the dc bus utilisation is increased in linear modulation region and total harmonic distortion (THD) is improved significantly in over modulation region. The power circuit topology consists of two standard two-level inverters, which are connected in cascade through an open-ended winding transformer. In order to obtain the polygonal voltage space vectors, the dc-link voltage of inverter 2 is maintained at 0.366 times the dc-link voltage of inverter 1. A simple control strategy to maintain the required dc-link voltage ratio as well as for reactive power compensation is proposed. To verify the proposed strategy, simulation is carried in MATLAB/SIMULINK. Simulation study is performed in linear, over modulation regions of the inverter and also with unbalanced network voltages. A laboratory prototype is designed and developed to validate the simulation results. Further, this scheme is compared with a sinusoidal pulse width modulation-based VAr compensation scheme using the same topology.
机译:该研究提出了一种静态VAr补偿方案,该方案使用12面多边形电压空间矢量进行大功率应用。使用多边形电压空间矢量,线性调制区域的直流母线利用率得到提高,过调制区域的总谐波失真(THD)显着提高。电源电路拓扑由两个标准的两级逆变器组成,它们通过一个开放式绕组变压器级联。为了获得多边形电压空间矢量,逆变器2的直流母线电压保持在逆变器1直流母线电压的0.366倍。一种简单的控制策略可保持所需的直流母线电压比以及无功建议进行功率补偿。为了验证所提出的策略,在MATLAB / SIMULINK中进行了仿真。仿真研究是在逆变器的线性,过调制区域以及不平衡的网络电压下进行的。设计并开发了一个实验室原型以验证仿真结果。此外,将该方案与使用相同拓扑的基于正弦脉冲宽度调制的VAr补偿方案进行了比较。

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  • 来源
    《Power Electronics, IET》 |2012年第8期|p.1500-1509|共10页
  • 作者

    Babu N.N.V.S.; Fernandes B.G.;

  • 作者单位

    Department of Electrical Engineering, Indian Institute of Technology Bombay, Powai, Mumbai 400076, India;

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  • 正文语种 eng
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