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Arm voltage balancing control of modular multilevel resonant converter

机译:模块化多级谐振转换器的ARM电压平衡控制

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Modular multilevel resonant converter is an promising candidate for high voltage applications since it has advantageous features, such as high efficiency, high voltage capability and easy fault-tolerant operation. However, the inequality of arm inductance in practice will lead to imbalance between the upper and lower arm voltages, which will induce large ripples in the circulating current and a dc bias on the voltage generated by modular circuits. To compensate for the voltage imbalance, effects of arm duty cycle changes on arm voltages are discussed. An arm voltage balancing control method is proposed: adjust arm duty cycle according to arm voltage deviation in every switching cycle. Simulation and experimental results are presented to validate the theoretical analysis and the proposed control method.
机译:模块化多级谐振转换器是高电压应用的承诺候选者,因为它具有有利的特征,例如高效率,高压能力和容易容错操作。然而,在实践中的臂电感的不等式将导致上臂和下臂电压之间的不平衡,这将在循环电流中引起大的涟漪和由模块化电路产生的电压上的DC偏置。为了补偿电压不平衡,讨论了臂占空比变化对臂电压的影响。提出了一种ARM电压平衡控制方法:根据每个开关周期的臂电压偏差调整臂占空比。提出了仿真和实验结果,以验证理论分析和所提出的控制方法。

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