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MMC Capacitor Voltage Balancing Strategy Based on Carrier Rotation

机译:基于载波旋转的MMC电容器电压平衡策略

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Modular multilevel converter (MMC) is one of the most potential converter structures for medium/high power/voltage applications. Since the electrical energy is stored in the capacitances of its sub-modules during the operation of the MMC, the output power quality is directly related to the capacitor voltage. Therefore, capacitor voltage balance is of great importance. In this paper, a capacitor voltage balancing strategy for the carrier phase-shifted modulation strategy is presented for MMC by rotating the carriers, which not only solves the problem of capacitor voltage balance, but also avoids complex closed-loop modulation and voltage sequencing. Considering the potential additional switching process during carrier rotation, the algorithm is further improved to find the best rotation period. The experiment verifies the propositions.
机译:模块化多电平转换器(MMC)是中/高功率/电压应用中最具潜力的转换器结构之一。由于在MMC运行期间电能存储在其子模块的电容中,因此输出功率质量与电容器电压直接相关。因此,电容器电压平衡非常重要。本文提出了一种通过旋转载流子实现MMC的载波相移调制策略的电容器电压平衡策略,不仅解决了电容器电压平衡的问题,而且避免了复杂的闭环调制和电压排序。考虑到载波旋转期间可能的附加切换过程,对该算法进行了进一步改进以找到最佳旋转周期。实验验证了命题。

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