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A distributed voltage balancing method for modular multilevel converter

机译:模块化多电平转换器的分布式电压平衡方法

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The great number of power modules (PMs) imposes great computational challenge on the voltage balancing of modular multilevel converter (MMC) as the sorting of the PM capacitor voltages is usually adopted. This paper presents a distributed control method for PM capacitor voltage balancing in MMC. With this method, all PMs in one arm are grouped and the sorting algorithm of the voltage balancing in each group is implemented in decentralized control unit. To keep the voltage balancing among different groups, a close-loop control system is proposed, using the average capacitor voltage of each group as the feedback. With this method, the computational load is reduced compared to the conventional method while the voltage balancing effect and the switching frequency are almost the same. Real-time experimental results on a ±350 kV/1000 MW MMC based on RT-LAB (OP7020 and OP5607) verify the feasibility and effectiveness of the proposed method.
机译:大量功率模块(PMS)对模块化多电平转换器(MMC)的电压平衡施加了很大的计算挑战,因为通常采用PM电容电压的分类。本文介绍了MMC中PM电容电压平衡的分布式控制方法。利用这种方法,一个臂中的所有PM都被分组,并且在分散的控制单元中实现了每个组中的电压平衡的排序算法。为了保持不同组之间的电压平衡,提出了一种闭环控制系统,使用每个组的平均电容电压作为反馈。利用这种方法,与传统方法相比,计算负载减少,而电压平衡效果和开关频率几乎相同。基于RT-LAB的±350 kV / 1000 MW MMC实时实验结果(OP7020和OP5607)验证了该方法的可行性和有效性。

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