Zero voltage switching non-isolated bidirectional DC–DC converter with transient current built-up technique

被引:0
作者
Shaogui Fan
Haifei He
Shang Chen
Jiandong Duan
Jiang You
Longlei Bai
机构
[1] Harbin Engineering University,College of Intelligent Systems Science and Engineering
[2] Yantai Research Institute and Graduate School of Harbin Engineering University,School of Electrical Engineering and Automation
[3] Harbin Institute of Technology,undefined
来源
Journal of Power Electronics | 2022年 / 22卷
关键词
Non-isolated converter; Bidirectional DC–DC converter; Zero voltage switching; Transient current;
D O I
暂无
中图分类号
学科分类号
摘要
Non-isolated bidirectional dc–dc converters (NBDCs) are widely used in energy storage systems. However, the zero-voltage switching (ZVS) for NBDCs is hard to realize by adding auxiliary circuits. The auxiliary current should be larger than the filtering inductor current. Then the auxiliary current causes high conduction losses, which have adverse effects on efficiency. In this paper, a ZVS NBDC with a transient current built-up technique is proposed, where the transient current is built in a very short time by an auxiliary circuit. The average value of the auxiliary current is quite small, which results in low conduction loss. The proposed auxiliary circuit does not result in high current or voltage stresses and does not affect the filtering inductor current. Experimental results show the correctness of the proposed zero-voltage switching method. They also show that the efficiency of the proposed NBDC is higher than that of the hard switching NBDC.
引用
收藏
页码:764 / 772
页数:8
相关论文
共 52 条
[1]  
Gorji SA(2019)Topologies and control schemes of bidirectional DC–DC power converters: an overview IEEE Access 7 117997-118019
[2]  
Sahebi HG(2009)New physical insights on power MOSFET switching losses IEEE Trans. Power Electron. 24 525-531
[3]  
Ektesabi M(2015)A novel load adaptive ZVS auxiliary circuit for PWM three-level DC–DC converters IEEE Trans. Power Electron. 30 2108-2126
[4]  
Rad AB(2007)High-Power density design of a soft-switching high-power bidirectional DC–DC converter IEEE Trans. Power Electron. 22 1145-1153
[5]  
Xiong Y(2011)A novel control scheme of synchronous buck converter for ZVS in light-load condition IEEE Trans. Power Electron. 26 3265-3273
[6]  
Sun S(2010)New resonant step-down/up converters IEEE Trans. Power Electron. 25 249-256
[7]  
Jia H(2016)A ZVS pulsewidth modulation full-bridge converter with a low-RMS-current resonant auxiliary circuit IEEE Trans. Power Electron. 31 4031-4047
[8]  
Shea P(2013)An improved soft-switching buck converter with coupled inductor IEEE Trans. Power Electron. 28 4885-4891
[9]  
John SZ(2011)Zero voltage switching synchronous buck converter with a coupled inductor IEEE Trans. Industr. Electron. 58 3440-3447
[10]  
Das P(2021)Soft-switched three-port DC–DC converter with simple auxiliary circuit IEEE Access 9 66738-66750