Bridgeless Step-Down PFC Converter Based on Dual-Resonant Switched-Capacitor Structure with Continuous Conversion Ratio

Yubo Han, Yunfeng Wu, Zhangyong Chen, Xiangyu Liu, Zhengdong Lu, Chang-Hua Zhang
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Abstract

Power factor correction (PFC) converter is widely utilized in grid-connected equipment and power adapter, etc. Conventional PFC Buck converter is not proper to maintain good performance at low output voltage with a wide input range. In the bridge-based PFC converter, the forward voltage of rectifier diodes is an important source of power loss. For overcoming the above-mentioned issues, a bridgeless PFC converter based on switched-capacitor dual-resonance tank is proposed in this paper. The switched-capacitor dual-resonance tank is meaningful to improve voltage regulating capacity and the bridgeless structure is helpful to eliminate rectifier diode loss. Additionally, only small inductors are utilized in the proposed PFC converter, which is useful to improve power density.
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基于连续转换比双谐振开关电容结构的无桥降压PFC变换器
功率因数校正(PFC)变换器广泛应用于并网设备和电源适配器等。传统的PFC降压变换器在低输出电压和宽输入范围下不能保持良好的性能。在桥式PFC变换器中,整流二极管的正向电压是功率损耗的重要来源。为了克服上述问题,本文提出了一种基于开关电容双谐振槽的无桥PFC变换器。开关电容双谐振槽对提高调压能力有重要意义,无桥结构有助于消除整流二极管损耗。此外,在所提出的PFC变换器中只使用了小型电感器,这有助于提高功率密度。
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