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Harmonic mitigation in DC-AC conversion by utilizing multi-level inverters and its application to PV systems for grid interconnection.

机译:利用多电平逆变器缓解DC-AC转换中的谐波,并将其应用于光伏系统的电网互连。

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摘要

Small (0.2-50 kW) and medium (50-1000 kW) PV systems typically utilize square wave inverters for DC-AC voltage conversion. The output voltage of square wave inverters consists of two voltage levels VDC- and V DC+. The square wave outputs are filtered to obtain a sinusoidal waveform before interconnection to the electric grid. While the simplicity of this approach makes it a popular choice, the voltage harmonics of the inverter output require a significant amount of filtering to obtain an acceptable sinusoidal waveform. Lowering voltage harmonic content can significantly lower filtering requirements and the need to invest in bulky filtering equipment.;Total Harmonic Distortion (THD) for a square wave inverter is 48.34%; use of a multilevel inverter can significantly reduce this value. The first part of this thesis summarizes several harmonic minimization techniques for multilevel inverters. An equal angle approach can be used to decrease THD to as low as 12%. Elimination of selected harmonics can be used to completely eliminate select low order harmonics and their integer multiples, and reduce THD to below 12% for a 7-level inverter. A THD minimization approach can be used to lower harmonics to below 17% for a 5-level inverter. These results can be achieved without using Pulse Width Modulation (PWM), which is unsuitable for high power applications due to high switching frequency requirements.;The second part of this thesis presents the application of multilevel inverters for the interconnection of PV systems to the electric grid. The main principle behind the strategy is designing a separate DC bus for each voltage level to which solar panel modules and a battery backup system are connected. Each DC bus will act as a DC voltage source for the multilevel inverter.;Design recommendations will be limited to 7-level inverters since higher level inverters are impractical due to the cost of additional components. A scheme with 3rd order harmonic elimination with THD reduced to 11.82% is presented. A scheme which simplifies equalizing voltage stress by using the equal angle approach with THD reduced to 25.47% is also presented.
机译:小型(0.2-50 kW)和中型(50-1000 kW)光伏系统通常使用方波逆变器进行DC-AC电压转换。方波逆变器的输出电压由两个电压电平VDC-和V DC +组成。在互连到电网之前,对方波输出进行滤波以获得正弦波形。虽然这种方法的简单性使其成为一种流行的选择,但逆变器输出的电压谐波需要大量滤波才能获得可接受的正弦波形。降低电压谐波含量可以显着降低滤波要求,并且需要投资购买大型滤波设备。方波逆变器的总谐波失真(THD)为48.34%;使用多电平逆变器可以大大降低该值。本文的第一部分总结了几种用于多电平逆变器的谐波最小化技术。等角方法可用于将THD降低至12%。消除所选谐波可用于完全消除所选的低阶谐波及其整数倍,并将7级逆变器的THD降低至12%以下。对于5级逆变器,可以使用THD最小化方法将谐波降低到17%以下。无需使用脉宽调制(PWM)即可获得这些结果,而脉宽调制由于开关频率要求高而不适用于大功率应用。本论文的第二部分介绍了多级逆变器在光伏系统与电气互连中的应用网格。该策略的主要原理是为每个电压水平设计一个单独的DC总线,太阳能电池板模块和备用电池连接到该总线。每个直流母线都将用作多电平逆变器的直流电压源。;由于附加组件的成本较高,因此更高级别的逆变器不可行,因此设计建议仅限于7电平逆变器。提出了一种三阶谐波消除方案,THD降低到11.82%。还提出了一种方案,该方案通过使用等角方法简化了平均电压应力,将THD降低到25.47%。

著录项

  • 作者

    Abid, Fahad.;

  • 作者单位

    Oklahoma State University.;

  • 授予单位 Oklahoma State University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 M.S.
  • 年度 2013
  • 页码 118 p.
  • 总页数 118
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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