The Optimal Design Method of High Efficiency Interleaved Boost Converter Based on Three Parameters

被引:0
作者
Xu H. [1 ]
Yin Z. [1 ]
Zhao Y. [1 ]
Huang Y. [1 ]
机构
[1] State Key Laboratory of Alternate Electrical Power System With Renewable Energy Sources, North China Electric Power University, Beijing
来源
Xu, Hengshan (x_hs@ncepu.edu.cn) | 2018年 / China Machine Press卷 / 33期
关键词
Boost inductance; Efficiency; Interleaved Boost converter (IBC); Output voltage; Switching frequency;
D O I
10.19595/j.cnki.1000-6753.tces.171118
中图分类号
学科分类号
摘要
The efficiency of interleaved Boost converter (IBC) is affected by the switching frequency, the boost inductor and the output voltage. The relationship curves between the efficiency of IBC and the above three parameters are calculated by analytical method. It is found that the efficiency of IBC has nonlinear relationships with the switching frequency/the boost inductance. Firstly, the output voltage is optimally designed considering the requirement of power factor. Then the optimal switching frequency and the optimal boost inductor are obtained by taking the partial derivatives of total loss or efficiency. A 3.3kW IBC prototype is developed. Its power factor is higher than 99%. Its full-load efficiency can reach 97.6%. The experimental results verify the correctness of the proposed design method in this paper. Compared with traditional design method, the proposed designed method can increase the efficiency of IBC. © 2018, Electrical Technology Press Co. Ltd. All right reserved.
引用
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页码:1328 / 1336
页数:8
相关论文
共 17 条
[11]  
Wei L., Liu S., You W., Et al., A novel interleaved Boost converter with non-resonant soft-switching, Transactions of China Electrotechnical Society, 32, 3, pp. 172-183, (2017)
[12]  
Wang F., Zhong Y., Ruan Y., A review of eliminating electrolytic capacitor in AC-DC light-emitting diode drives, Transactions of China Electrotechnical Society, 30, 8, pp. 176-185, (2015)
[13]  
Chen Z., Xu J., Yang P., Et al., Variable duty cycle control quadratic Boost power factor correction converter, Transactions of China Electrotechnical Society, 31, 16, pp. 72-82, (2016)
[14]  
Loughlin M.Q., UCC28070 300W interleaved PFC pre-regulator design review, (2010)
[15]  
Gautam D.S., Musavi F., Edington M., Et al., An automotive on board 3.3kW battery charger for PHEV application, IEEE Transactions on Vehicular Technology, 61, 8, pp. 3466-3474, (2012)
[16]  
Nussbaumer T., Raggl K., Kolar J.W., Design guidelines for interleaved single-phase Boost PFC circuits, IEEE Transactions on Industrial Electronics, 56, 7, pp. 2559-2573, (2009)
[17]  
Yao K., Hu W., Li Q., Et al., A novel control scheme of DCM Boost PFC converter, IEEE Transactions on Power Electronics, 30, 10, pp. 5605-5615, (2015)