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A Low-loss Energy Rebalancing Control Scheme of MMC Under Submodule Fault Conditions

机译:子模块故障条件下MMC的低损耗能再平衡控制方案

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Modular multilevel converter (MMC) has attracted great attention in the high voltage direct current (HVDC) transmission systems. Redundant submodules (SMs) are usually set to enhance the reliability of MMC. However, if some SMs break down, the arm energy is unbalanced and fundamental fluctuation appears in the DC current. This paper proposes an arm energy rebalancing control scheme to suppress the fluctuation. The proposed scheme does not increase the SM voltage if the fault number is not more than the rated number of redundant SMs, unlike the conventional schemes. Additionally, the average losses of SMs are analyzed respectively, when the proposed and conventional schemes are adopted. The simulation results of the ±350 kV/1000 MW MMC verify the correctness of the proposed energy rebalancing control scheme and its characteristic of low loss in comparison with the conventional schemes.
机译:模块化多电平转换器(MMC)在高压直流(HVDC)传输系统中引起了极大的关注。冗余子模块(SMS)通常设置为增强MMC的可靠性。但是,如果一些短信分解,则臂能量是不平衡的,直流电流出现的根本波动。本文提出了一种扶手能量再平衡控制方案来抑制波动。与传统方案不同,如果故障编号不大于额定冗余SMS的额定数量,所提出的方案不会增加SM电压。另外,分别通过所提出的和传统方案进行分析SMS的平均损耗。 ±350 kV / 1000 MW MMC的仿真结果验证了所提出的能量再平衡控制方案的正确性及其与传统方案相比的低损失特性。

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