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Modular Multilevel Converter for Electric Motor Drive Applications

机译:用于电动机驱动应用的模块化多电平转换器

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摘要

In this master thesis the topic of Modular Multilevel Converters (MMC) has been studied. The working principle of the converter is presented with advantageous attributes such as a multilevel waveform, a modular realization and cost saving features. Vital control objectives are active and reactive power control, DC link voltage control, submodule capacitor voltage control and current control. A level-shifted pulse-width modulation (PWM) switching scheme was found to have relatively low total harmonic distortion (THD), thus used in the upcoming simulations. In order to ensure balancing of the converter capacitors, a voltage balancing algorithm was presented, sorting the capacitors based on their voltage level, and giving a state command accordingly. The thesis has examined the challenges of using MMC for electric motor drive applications. It has been found that the low frequency operation causes large voltage ripple in the capacitors, thus a large circulating current. Through a literature search, different measures where found in order to reduce the circulating current, including circulating current suppressing and manipulation. In addition an introduction of a common mode voltage was presented as a possible measure.After developing the one-phase model of the project thesis into a three-phase model, the circulating current suppressing controllers (CCSC) were tested, first at 50Hz, and then at 25Hz. At 50Hz, all three controllers worked as intended, reducing the circulating current by up to 72% and the voltage ripple was reduced from ∆vc = 10V to ∆vc = 6V . At 25Hz, all the controllers maintained their ability to reduce the circulating current. Nonetheless, it was concluded that further measures must be studied, as all controllers increased the capacitor voltage ripple atf =25Hz.
机译:在本硕士论文中,对模块化多电平转换器(MMC)的主题进行了研究。提出了转换器的工作原理,并具有诸如多电平波形,模块化实现和节省成本等优点。重要的控制目标是有功和无功功率控制,直流母线电压控制,子模块电容器电压控制和电流控制。人们发现电平移位脉冲宽度调制(PWM)切换方案具有相对较低的总谐波失真(THD),因此可用于即将进行的仿真中。为了确保转换器电容器的平衡,提出了一种电压平衡算法,根据电容器的电压水平对其进行排序,并相应地给出状态命令。本文研究了将MMC用于电动机驱动应用的挑战。已经发现,低频工作在电容器中引起大的电压纹波,因此大的循环电流。通过文献搜索,找到了减少循环电流的不同措施,包括抑制和操纵循环电流。此外,还提出了引入共模电压的一种可能措施。将项目论文的单相模型开发为三相模型后,首先在50Hz下测试循环电流抑制控制器(CCSC),然后以25Hz在50Hz时,所有三个控制器均按预期工作,将循环电流降低了多达72%,电压纹波从∆vc = 10V降至∆vc = 6V。在25Hz时,所有控制器都保持了减小循环电流的能力。但是,得出的结论是,由于所有控制器都增加了atf = 25Hz的电容器电压纹波,因此必须研究进一步的措施。

著录项

  • 作者

    Ekern Bertil Lassesen;

  • 作者单位
  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 eng
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