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Hybrid predictive control with simple linear control based circulating current suppression for modular multilevel converters

机译:具有基于简单线性控制的混合预测控制基于模块化多级转换器的循环电流抑制

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摘要

The modular multilevel converter (MMC) has become a promising topology for widespread power converter applications. However, an evident circulating current flowing between the phases will increase system losses and complicate the heatsink design. This paper proposes a novel hybrid model predictive control method for MMCs. This method utilizes an indirect structure MPC and a sorting algorithm to implement current tracking and capacitor voltages balancing, considerably resulting in reduced calculation burden. In addition, different from the conventional MPC solutions, we add a simple proportional-integral (PI) controller to suppress circulating current through modifying the submodule (SM) inserted number, which is parallel to the MPC loop. This hybrid control solution combines both advantages of MPC and linear control, evidently resulting in improved performance of circulating current. Finally, the MATLAB/Simulink results of an 11-level MMC system verify the effectiveness of the proposed solution.
机译:模块化多电平转换器(MMC)已成为广泛电源转换器应用的有前途拓扑。然而,在阶段之间流动的明显的循环电流将增加系统损耗并使散热器设计复杂化。本文提出了一种用于MMC的新型混合模型预测控制方法。该方法利用间接结构MPC和排序算法来实现电流跟踪和电容电压平衡,显着导致降低的计算负担。此外,与传统的MPC解决方案不同,我们通过修改子模块(SM)插入的数量,添加简单的比例积分(PI)控制器来抑制循环电流,该插入数量并联到MPC环路。该混合控制解决方案结合了MPC和线性控制的两种优点,显然导致循环电流的性能提高。最后,11级MMC系统的Matlab / Simulink结果验证了所提出的解决方案的有效性。

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