Design of Dual Active Bridge Series Resonant Converter Based on Frequency Domain Analysis and Closed-loop Control

被引:0
|
作者
Zhao F. [1 ]
Gan Y. [1 ]
Chen X. [1 ]
Wang Y. [1 ]
机构
[1] School of Automation and Electrical Engineering, Lanzhou Jiaotong University, Lanzhou
来源
基金
中国国家自然科学基金;
关键词
DC-DC converter; frequency domain analysis; series resonant; small signal modeling; ZVS;
D O I
10.13336/j.1003-6520.hve.20210951
中图分类号
学科分类号
摘要
In order to expand the scope of soft-switching of the dual active bridge series resonant converter (DABSRC), and improve the steady-state performance of DABSRC, the design method of converter according to frequency domain analysis is proposed and the dynamic small signal model of DABSRC is established. Firstly, frequency domain analysis is performed to acquire the operation characteristics of DABSRC. The operation characteristics are utilized to design the voltage gain, quality factor and other parameters of DABSRC. Then, in view of the problem that the converter needs closed-loop control in actual system, the dynamic small signal model of DABSRC is built to provide the basis for the design of closed-loop control. In the end, the Matlab model of DABSRC is set up to prove the effectiveness of analysis method and close-loop control. The results show that the design approach based on frequency domain analysis can ensure the soft switching of DABSRC under different operation conditions, and the steady-state performance of DABSRC can be effectively enhanced by closed-loop control. © 2022 Science Press. All rights reserved.
引用
收藏
页码:4557 / 4567
页数:10
相关论文
共 20 条
  • [1] LIU Xianglong, LIU Youbo, YIN Hang, Et al., Network planning of AC/DC hybrid distribution system with power electronic transformers, High Voltage Engineering, 47, 4, pp. 1283-1294, (2021)
  • [2] WANG Zhe, LI Yaohua, LI Zixin, Et al., Design method of capacitance value of three-phase cascaded H-bridge power electronic transformer, Electric Power Automation Equipment, 40, 1, pp. 219-224, (2020)
  • [3] CHEN Yixin, WANG Zhixin, LIN Huancheng, Et al., Model predictive control strategy of MMC-HVDC suitable for weak AC system, Electric Power Automation Equipment, 40, 1, pp. 80-86, (2020)
  • [4] WANG Weiwang, LIU Ying, He Jiefeng, Et al., Research status and development of high frequency transformer used in high voltage and large capacity power electronic transformer, High Voltage Engineering, 46, 10, pp. 3362-3373, (2020)
  • [5] SHEN Kai, TONG Anping, HANG Lijun, Et al., Soft switching modulation strategy of dual active bridge converters applied in renewable energy systems, Automation of Electric Power Systems, 43, 9, pp. 154-159, (2019)
  • [6] WANG Shien, ZHENG Zedong, LI Yongdong, Frequency domain analysis of dual active bridge DC-DC converter with series resonant, High Power Converter Technology, 4, pp. 26-30, (2017)
  • [7] WU Junjuan, LI Yuci, ZHANG Zhen, Et al., Analysis on soft-switching characteristics of series resonant dual-active-bridge converter, Acta Energiae Solaris Sinica, 38, 11, pp. 3005-3011, (2017)
  • [8] RAMABHADRAN R, SHE X, LEVY Y, Et al., Universal AC input high-density power adapter design with a clamped series-resonant converter, IEEE Transactions on Industry Applications, 52, 5, pp. 4096-4107, (2016)
  • [9] HE Xin'an, ZHOU Yufei, SHENG Lunhui, Variable frequency and phase shifting hybrid control for CLL resonant converter, Acta Energiae Solaris Sinica, 42, 3, pp. 299-304, (2021)
  • [10] YAQOOB M, LOO K H, LAI Y M., Extension of soft-switching region of dual-active-bridge converter by a tunable resonant tank, IEEE Transactions on Power Electronics, 32, 12, pp. 9093-9104, (2017)