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Investigation of control and applications of modular multilevel converter with sub-modular series IGBTs

机译:模块化系列IGBTS模块化多电平转换器的控制与应用研究

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Modular Multilevel Converter (MMC) has been an attractive option for power transmission and has been studied and used for HVDC applications. However, it still has limitations when the number of Sub-Modules per arm is large. To avoid the limitations and exploit the advantages, a method is proposed in this paper which integrates an MMC with series-connected IGBTs in each Sub-Module (SM). The proposed MMC is able to withstand a higher voltage with devices of lower voltage ratings. The series-connected IGBTs are self-balancing. Simulink and real-time simulations both show that, with the proposed method, series IGBTs are able to share a much higher MMC sub-module voltage and recover from voltage imbalances in a timely manner. The proposed series IGBT balancing method causes considerably less loss compared to RCD snubber circuit-based balancing methods.
机译:模块化多电平转换器(MMC)是电力传输的有吸引力的选择,并已研究并用于HVDC应用。但是,当每个臂的子模块的数量大时,它仍然存在局限性。为避免限制和利用优点,本文提出了一种方法,该方法将MMC与每个子模块(SM)中的串联IGBT集成。所提出的MMC能够承受更高的电压,其具有较低电压额定值的装置。系列连接的IGBT是自平衡的。 Simulink和实时仿真均表明,利用所提出的方法,IGBTS能够以更高的MMC子模块电压共享更高的MMC子模块电压并及时从电压不平衡中恢复。与基于RCD缓冲电路的平衡方法相比,所提出的串联IGBT平衡方法导致损耗相当较小。

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