Abstract:The bidirectional DC-DC converter with high step-up ratio acts as an important role between the low-voltage bus and the medium-voltage bus in distributed generation system. In order to reduce the current ripple in low voltage side and improve the gain of the converter, a novel current-fed bidirectional DC-DC converter with high step-up ratio is proposed in this paper. Two Boost input inductors for the converter are linked in the bridge arms on the low voltage side. The Boost inductors are interleaved to reduce the low side current ripple and increase the voltage gain significantly. LLC resonant network is added on the low voltage side, and the switching frequency is controlled to be less than the resonant frequency of the LLC. High voltage ratio and ZVS for all switches on the low voltage side can be realized. Voltage doubling rectifier is added on the high voltage side to improve the gain further. The ZVS turn-on and the ZCS turn-off for all switches on the high-voltage side can be realized by the resonance of the leakage inductance of the transformer and the resonant capacitor. Therefore, the conduction losses of the switches can be reduced, and the efficiency of the converter can be improved. Finally, a LLC bidirectional DC-DC converter with high step-up ratio based on PWM+PFM control is built to verify the feasibility and practicability of the converter in forward and backward mode.
齐磊, 杨亚永, 孙孝峰, 李昕. 一种电流型高增益双向DC-DC变换器[J]. 电工技术学报, 2019, 34(18): 3797-3809.
Qi Lei, Yang Yayong, Sun Xiaofeng, Li Xin. A Current-Fed High Step-Up Bidirectional DC-DC Converter. Transactions of China Electrotechnical Society, 2019, 34(18): 3797-3809.
[1] 刘宿城, 甘洋洋, 刘晓东, 等. 超级电容接口双向DC-DC变换器的电压快恢复控制策略[J]. 电工技术学报, 2018, 33(23): 5496-5508. Liu Sucheng, Gan Yangyang, Liu Xiaodong, et al.Fast voltage recovery control strategy for supercapacitor interfacing bidirectional DC-DC converter[J]. Transactions of China Electrotechnical Society, 2018, 33(23): 5496-5508. [2] 孙孝峰, 袁野, 王宝诚, 等. 零电压开关三电平 Buck-Boost双向变换器[J]. 电工技术学报, 2018, 33(2): 293-300. Sun Xiaofeng, Yuan Ye, Wang Baocheng, et al.Zero-voltage switching three-level Buck-Boost bidirectional converter[J]. Transactions of China Electrotechnical Society, 2018, 33(2): 293-300. [3] 殷晓东, 罗登, 李祖勇, 等. 一种双向隔离DC-DC变换器二次纹波电压抑制方法[J]. 电工技术学报, 2018, 33(6): 1356-1363. Yin Xiaodong, Luo Deng, Li Zuyong, et al.A second-order ripple voltage suppression algorithm of bidirectional isolation DC-DC converter[J]. Transa- ctions of China Electrotechnical Society, 2018, 33(6): 1356-1363. [4] Zhao Qun, Lee F C.High-efficiency, high step-up DC-DC converters[J]. IEEE Transactions on Power Electronics, 2003, 18(1): 65-73. [5] 于德, 付超, 王毅, 等. 隔离型双向直流变换器的最小回流功率移相控制方法[J]. 电工技术学报, 2017, 32(24): 126-138. Yu De, Fu Chao, Wang Yi, et al.The phase-shifted control method of isolated bidirectional DC-DC converter with minimum backflow power[J]. Transactions of China Electrotechnical Society, 2017, 32(24): 126-138. [6] Yaqoob M, Loo K H, Lai Y M.Fully soft-switched dual-active-bridge converter with switched-impedance- based power control[J]. IEEE Transactions on Power Electronics, 2018, 33(11): 9267-9281. [7] Tariq M, Maswood A I, Gajanayake C J, et al.Battery energy storage system integration to the more electric aircraft 270V DC power distribution bus using peak current controlled dual active bridge converter[C]// IEEE Energy Conversion Congress and Exposition, Cincinnati, 2017: 2068-2073. [8] Shen Yanfeng, Sun Xiaofeng, Li Wuying,et al.A modified dual active bridge converter with hybrid phase-shift control for wide input voltage range[J]. IEEE Transactions on Power Electronics, 2016, 31(10): 6884-6900. [9] 杨子靖, 王聪, 辛甜, 等. 双向全桥LLC谐振变换器的理论分析与仿真[J]. 电源学报, 2012, 10(3): 48-51. Yang Zijing, Wang Cong, Xin Tian, et al.Theoretical analysis and simulation of the bidirectional LLC resonant DC/DC converter[J]. Journal of Power Supply, 2012, 10(3): 48-51. [10] 江添洋, 张军明, 汪槱生. 同步控制双向LLC谐振变换器[J]. 电工技术学报, 2015, 30(12): 87-96. Jiang Tianyang, Zhang Junming, Wang Yousheng.Bidirectional LLC resonant converter with synchronous control method[J]. Transactions of China Electro- technical Society, 2015, 30(12): 87-96. [11] Peng Fangzheng, Li Hui, Su Guijia, et al.A new ZVS bidirectional DC-DC converter for fuel cell and battery application[J]. IEEE Transactions on Power Electronics, 2009, 19(1): 54-65. [12] Sun Xiaofeng, Wu Xiaoying, Shen Yanfeng, et al.A current-fed isolated bidirectional DC-DC converter[J]. IEEE Transactions on Power Electronics, 2017, 32(9): 6882-6895. [13] Rathore A K, Prasanna U R.Analysis, design, and experimental results of novel snubberless bidi- rectional naturally clamped ZCS/ZVS current-fed half-bridge DC/DC converter for fuel cell vehicles[J]. IEEE Transactions on Industrial Electronics, 2013, 60(10): 4482-4491. [14] Han S K, Yoon H K, Moon G W, et al.A new active clamping zero-voltage switching PWM current-fed half-bridge converter[J]. IEEE Transactions on Power Electronics, 2005, 20(6): 1271-1279. [15] Jang S J, Won C Y, Lee B K, et al.Fuel cell generation system with a new active clamping current-fed half-bridge converter[J]. IEEE Transa- ctions on Energy Conversion, 2007, 22(2): 332-340. [16] Zhu Lizhi.A novel soft-commutating isolated Boost full-bridge ZVS-PWM DC-DC converter for bidirectional high power applications[J]. IEEE Transactions Power Electron, 2006, 21(2): 422-429. [17] 宋成江. 双向高电压变换比变换器的研究[D]. 秦皇岛: 燕山大学, 2016.