MOSFET
材料科学
电压
充电泵
电气工程
反激变换器
电子工程
光电子学
升压变换器
电容器
晶体管
工程类
作者
Shiqiang Liu,Guiyi Dong,Tomokazu Mishima,Ching‐Ming Lai
标识
DOI:10.1109/tpel.2024.3389052
摘要
A novel floating four-phase interleaved chargepump bidirectional dc-dc converter (F4P-ICPBDC) with wide Buck/Boost voltage ratio is proposed in this article.The interleaved structure is employed to mitigate the current ripple across the low-voltage side capacitor and inductors, while the floating configuration facilitates the high Buck/Boost voltage conversion ratio.To ensure a balanced average inductor current throughout the entire range of duty cycle, a cost-effective asymmetric duty limit control strategy is implemented.In addition, bidirectional synchronous rectification operations are seamlessly carried out without the need for additional hardware, thereby enhancing the overall converter efficiency.Furthermore, the full operating principles, device stresses, current ripple characteristics, as well as parameters design guideline of the converter are illustrated.Finally, A 1kW-50kHz prototype, utilizing SiC-MOSFETs, is developed to validate the wide Buck/Boost voltage ratio of the proposed converter between the constant low-voltage side (72 V) and the adjustable high-voltage side (400-800 V).The maximum efficiencies of the converter are recorded as 98.3% in the Buck mode and 97.6% in the Boost mode, respectively.Experimental results validate the feasibility and the efficacy of the proposed converter.
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