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An improved voltage balancing algorithm for grid connected MMC for medium voltage energy conversion

机译:并网MMC中压能量转换的改进电压平衡算法

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摘要

Modular multi-level converter (MMC) is one of the promising topologies for medium voltage, high power energy conversion applications. The balancing of the capacitor voltage of the MMC Submodules (SMs) plays a critical role for proper operation of MMC. This paper proposes an improved balancing approach based on space vector PWM (SVPWM). The proposed method uses only one SVPWM, which not only simplifies the calculation but also reduces the circulating current in the MMC, thereby reducing the inductor size and improving the converter efficiency. The above balancing algorithm is applied to a MMC-based DC to AC converter connected to the strong AC grid as well as weak AC grid. The power injection capacity and instability problem when MMC is connected to weak AC grid is addressed. The closed loop operation and satisfactory energy conversion in the MMC-based grid connected DC to AC is verified through simulation and the results are presented. (C) 2017 Elsevier Ltd. All rights reserved.
机译:模块化多电平转换器(MMC)是中压,高功率能量转换应用的有前途的拓扑之一。 MMC子模块(SM)的电容器电压的平衡对于MMC的正常运行起着至关重要的作用。本文提出了一种基于空间矢量PWM(SVPWM)的改进的平衡方法。所提出的方法仅使用一个SVPWM,不仅简化了计算,而且减小了MMC中的循环电流,从而减小了电感尺寸并提高了转换器效率。以上平衡算法适用于连接到强交流电网和弱交流电网的基于MMC的DC到AC转换器。解决了MMC连接到弱AC电网时的功率注入能力和不稳定性问题。通过仿真验证了基于MMC的直流到交流电网的闭环运行和令人满意的能量转换,并给出了结果。 (C)2017 Elsevier Ltd.保留所有权利。

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