混合双向推挽DC-DC变换器与阶梯开关电容器电池

Marcos Dantas, F. Oliveira, Lorena Albuquerque, I. Freitas, R. Andersen
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引用次数: 1

摘要

近年来,由于分布式发电、电动汽车、储能和不间断电源的使用增加,直流-直流功率转换已成为一个重要的研究课题。在这些应用中,通常会出现没有特定负载或电源侧的情况,即双方都可以表现为电源或负载,这凸显了研究双向转换器的重要性。本文提出了一种新型的带开关电容梯形单元的推挽式混合式dc-dc变换器,并给出了变换器的分析、静态增益数学方程的推导和设计、控制策略和仿真结果。这种拓扑结构的优点是双向、软开关、高增益、自然电压箝位、降低开关电压和高频隔离。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Hybrid Bidirectional Push-Pull DC-DC Converter with a Ladder Switched-Capacitor Cell
Dc-dc power conversion has been an important topic research in the last years, due to increased use of distributed generation, electric vehicles, energy storage and uninterruptible power supplies. In these applications, it is common to have situations where there’s no specific load or power supply side, that is, both sides can behave like a power supply or a load, which highlights the importance of studying bidirectional converters. This paper proposes a new hybrid push-pull dc-dc converter with a switched capacitor ladder cell and will be presented the converter analysis, deduction of mathematical equations of static gain and design, control strategy and simulation results. The advantages of this topology are bidirectionality, soft switching, high gain, natural voltage clamping, reduced switch voltage and high-frequency isolation.
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