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Analysis on Circulating Current Frequency of Chain-link Modular Multilevel DC-DC Converters for Low Step-Ratio High-Power MVDC Applications

机译:低阶跃比大功率MVDC应用的链式模块化多电平DC-DC转换器的循环电流频率分析

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The direct chain-link modular multilevel dc converter has raised great interest recently in medium/high-voltage dc-dc conversion due to the high power device utilization and lower power losses than the front-to-front configurations of modular multilevel converter. This paper introduces a single-phase chain-link modular multilevel buck-boost converter for medium voltage dc applications and presents an analysis methodology on its internal circulating current frequency. Its connection and comparison with the classic dc-ac modular multilevel converter are given first, and its dc and ac components are analyzed in the respective equivalent circuits. Then, the derivation methodology for the proper circulating current frequency with lowest internal reactive power is provided, which could minimize the current stress and decrease the power losses. Also, this method can be directly applied in the derivative topologies and further configurations to satisfy various conversion requirements. The theoretical analysis is verified by a set of full-scaled simulations and further verified against experimental tests on a down-scaled prototype.
机译:与模块化多电平转换器的从前到前配置相比,直链式模块化多电平dc转换器近来引起了对中/高压dc-dc转换的极大兴趣,这是因为高功率器件利用率和更低的功率损耗。本文介绍了一种用于中压直流应用的单相链式模块化多级降压-升压转换器,并提出了其内部循环电流频率的分析方法。首先给出了它与经典dc-ac模块化多电平转换器的连接和比较,并在相应的等效电路中分析了其dc和ac分量。然后,提供了具有最低内部无功功率的适当循环电流频率的推导方法,该方法可以最大程度地减小电流应力并降低功率损耗。此外,该方法可以直接应用于派生拓扑和其他配置中,以满足各种转换要求。理论分析已通过一组全面的模拟进行了验证,并针对缩小规模的原型针对实验测试进行了进一步验证。

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