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A nearest level PWM method for the MMC in DC distribution grids

机译:直流配电网中MMC的最接近PWM方法

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摘要

For modular multilevel converters (MMCs) applied to medium-voltage DC distribution grids, using the traditional Nearest Level Modulation (NLM) as in HVDC systems can lead to severe current distortion due to significantly reduced module number. This paper proposes a hybrid modulation method combining NLM and Pulse Width Modulation (PWM) where only one module per arm operates under PWM mode. The proposed Nearest Level PWM (NL-PWM) method not only significantly reduces the current distortion, but also avoids the complicated voltage balancing control in each module. The harmonic characteristics of NL-PWM are derived using double Fourier transform, which provides theoretical basis for selecting module number and switching frequency for medium-voltage application in accordance with grid harmonic requirements. Finally, the harmonic characteristics and feasibility of the proposed modulation method are validated by simulation and experimental studies on a MMC with 6 modules per arm. The simulated and experimental results reveal that NL-PWM has better voltage and current harmonic characteristics over NLM and CPS-PWM, thereby suiting the application of MMC with few models.
机译:对于应用于中压直流配电网的模块化多电平转换器(MMC),由于在HVDC系统中使用传统的最近电平调制(NLM),会导致模块数量明显减少,从而导致严重的电流失真。本文提出了一种结合了NLM和脉宽调制(PWM)的混合调制方法,其中每臂只有一个模块在PWM模式下运行。提出的最近电平PWM(NL-PWM)方法不仅显着降低了电流失真,而且避免了每个模块中复杂的电压平衡控制。 NL-PWM的谐波特性是通过双重傅立叶变换得出的,这为根据电网谐波要求选择中压应用的模块数量和开关频率提供了理论基础。最后,通过对每臂6个模块的MMC的仿真和实验研究,验证了所提出的调制方法的谐波特性和可行性。仿真和实验结果表明,NL-PWM具有比NLM和CPS-PWM更好的电压和电流谐波特性,从而适合少数模型的MMC应用。

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