Soft-Switching High Voltage Gain DC-DC Converter Based on Switched-Capacitor

被引:0
|
作者
Lei H. [1 ]
Hao R. [1 ]
You X. [1 ]
Xiang P. [1 ]
机构
[1] School of Electrical Engineering, Beijing Jiaotong University, Beijing
来源
Hao, Ruixiang (haorx@bjtu.edu.cn) | 2018年 / China Machine Press卷 / 33期
关键词
DC-DC converter; high voltage gain; resonant inductor; soft-switching; Switched-capacitor;
D O I
10.19595/j.cnki.1000-6753.tces.170247
中图分类号
学科分类号
摘要
In this paper, a switched-capacitor based DC-DC converter topology with high voltage gain and soft-switching character is presented. The proposed topology can achieve high voltage gain without operating the switches at extreme duty cycle and has PWM voltage regulation ability similar to conventional Boost converter. Through resonant soft-switching technique, zero-voltage switching (ZVS) turn-on of all switches and zero-current switching (ZCS) turn-off of all diodes are achieved, which is useful to improve the efficiency and power density of the converter. The voltage stresses of switches and diodes are low, so low voltage level and low on-resistance devices can be adopted to reduce the conduction losses. The operation principle of the proposed topology was analyzed in detail, and the steady-state characteristics were analyzed, including voltage gain characteristics and soft-switching operating conditions. Finally, a prototype converter with 25-40V input and 400V/1kW output was established, and the experimental results verified the theoretical analysis. © 2018, Electrical Technology Press Co. Ltd. All right reserved.
引用
收藏
页码:2821 / 2830
页数:9
相关论文
共 24 条
  • [1] Li Q., Wolfs P., A review of the single phase photovoltaic module integrated converter topologies with three different DC link configurations, IEEE Transactions on Power Electronics, 23, 3, pp. 1320-1333, (2008)
  • [2] Li W.H., Fan L.L., Zhao Y., Et al., High-step-up and high-efficiency fuel-cell power-generation system with active-clamp flyback-forward converter, IEEE Transactions on Industrial Electronics, 59, 1, pp. 599-610, (2012)
  • [3] Huber L., Jovanovic M.M., A design approach for server power supplies for networking applications, Applied Power Electronics Conference and Expo- sition, New Orleans, USA, pp. 1163-1169, (2000)
  • [4] Chen Z., Xu J., Wu J., Et al., High voltage gain Boost converter based on coupled- inductor voltage-doubler cell and LC snubber circuit, Transactions of China Electrotechnical Society, 31, 2, pp. 78-85, (2016)
  • [5] Hu X.F., Gong C.Y., A high voltage gain DC-DC converter integrating coupled-inductor and diode- capacitor techniques, IEEE Transactions on Power Electronics, 29, 2, pp. 789-800, (2014)
  • [6] Zhou X., Xu J., Chen Z., Soft- switched DC-DC converter with high voltage gain, Transactions of China Electrotechnical Society, 29, 2, pp. 789-800, (2014)
  • [7] Luo Q., Yan H., Sun M., Et al., High step-up Boost converter based on topology combination, Transactions of China Electro- technical Society, 27, 6, pp. 96-102, (2012)
  • [8] Wei J., Yao K.W., Xu M., Et al., Applying transformer concept to non-isolated voltage regulators significantly improves the efficiency and transient response, Power Electronics Specialists Conference, Acapulco, Mexico, pp. 1599-1604, (2003)
  • [9] Wen J., Jin T.T., Smedley K., A new interleaved isolated Boost converter for high power appli- cations, Applied Power Electronics Conference and Exposition, Dallas, USA, pp. 79-84, (2006)
  • [10] Lee J.H., Liang T.J., Chen J.F., Isolated coupled- inductor-integrated DC-DC converter with nondissi- pative snubber for solar energy applications, IEEE Transactions on Industrial Electronics, 61, 7, pp. 3337-3348, (2014)