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Closed-loop control of the DC-DC modular multilevel converter

机译:DC-DC模块化多电平转换器的闭环控制

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The DC-DC Modular Multilevel Converter (MMC), which has originated from the AC-DC MMC circuit topology, is an attractive converter topology for interconnection of medium/high-voltage DC grids. Proper operation of the DC-DC MMC necessitates injection of an AC circulating current to maintain its submodule (SM) capacitor voltages balanced. The AC circulating current, however, needs to be minimized for efficiency improvement. In addition, a unique type of imbalance amongst the SM capacitor voltages that is caused by DC power flow needs to be mitigated. This paper proposes a closed-loop control strategy for the DC-DC MMC to simultaneously regulate the DC-link currents, maintain the SM capacitor voltages balanced and minimize the AC circulating current. Performance and effectiveness of the proposed control strategy are evaluated based on simulation studies in the Matlab Simulink and experimentally verified on a laboratory prototype.
机译:DC-DC模块化多电平转换器(MMC)起源于AC-DC MMC电路拓扑,是用于中/高压DC电网互连的有吸引力的转换器拓扑。 DC-DC MMC的正确运行需要注入交流循环电流以维持其子模块(SM)电容器电压平衡。但是,为了提高效率,需要使交流循环电流最小化。另外,需要减轻由直流潮流引起的SM电容器电压之间的独特失衡。本文提出了一种用于DC-DC MMC的闭环控制策略,以同时调节DC链路电流,保持SM电容器电压平衡并最小化AC循环电流。基于Matlab Simulink中的仿真研究评估了所提出控制策略的性能和有效性,并在实验室原型上进行了实验验证。

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