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A New Resonant Modular Multilevel Step-Down DC–DC Converter with Inherent-Balancing

机译:具有固有平衡的新型谐振模块化多电平降压DC-DC转换器

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摘要

Modular multilevel converters (MMCs) have become increasingly interesting in dc–dc applications, as there is a growing demand for dc–dc converters in high-voltage applications. Power electronics transformers can be used for high step-down ratio dc–dc power conversion, with high power rating and efficiency achieved. However, this arrangement requires a large number of high isolation voltage transformers and a complicated balancing control scheme. To provide a simple solution with inherent voltage balancing, this paper presents a new resonant MMC topology for dc–dc conversion. The proposed converter achieves high-voltage step-down ratio depending on the number of submodules. The converter also exhibits simplicity and scalability with no necessary requirement of high-voltage isolation transformers. By using phase-shift control, a much higher converter operating frequency is achieved compared to the switching frequency. Resonant conversion is achieved between the series inductor and submodule capacitors. The operation principle and theoretical analysis are presented in this paper, which have been verified by experimental results based on a bench-scale prototype.
机译:模块化多电平转换器(MMC)在dc-dc应用中变得越来越有趣,因为在高压应用中对dc-dc转换器的需求不断增长。电力电子变压器可用于高降压比dc-dc电源转换,并具有较高的额定功率和效率。然而,这种布置需要大量的高隔离电压变压器和复杂的平衡控制方案。为了提供具有固有电压平衡的简单解决方案,本文提出了一种用于DC-DC转换的新型谐振MMC拓扑。所提出的转换器根据子模块的数量来实现高压降压比。该转换器还具有简单性和可扩展性,不需要高压隔离变压器。通过使用相移控制,与开关频率相比,可获得更高的转换器工作频率。在串联电感器和子模块电容器之间实现谐振转换。给出了工作原理和理论分析,并基于台式样机进行了实验验证。

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