DocumentCode
42701
Title
Secondary-Side Phase-Shift-Controlled ZVS DC/DC Converter With Wide Voltage Gain for High Input Voltage Applications
Author
Wuhua Li ; Sheng Zong ; Fangrui Liu ; Huan Yang ; Xiangning He ; Bin Wu
Author_Institution
Coll. of Electr. Eng., Zhejiang Univ., Hangzhou, China
Volume
28
Issue
11
fYear
2013
fDate
Nov. 2013
Firstpage
5128
Lastpage
5139
Abstract
In this paper, a soft-switching dc/dc converter with secondary-side phase-shift control strategy is proposed to improve the conversion efficiency and minimize the primary switch voltage stress in the high input voltage applications. Zero-voltage-switching performance is achieved for both the primary- and secondary-side power devices in a wide load range to reduce the switching losses due to the secondary-side phase-shift control scheme. Furthermore, compared with the conventional phase-shift control mechanism, the circulating current at the freewheeling stage is effectively suppressed as well to minimize the conduction losses. Moreover, the voltage stress of the primary switches is only half of the input voltage by employing the improved three-level structure, which makes the low-voltage rated power devices available to improve the circuit performance. In addition, the converter can work in the buck, balance, and boost modes to achieve a relatively wide input voltage range, which is an expected advantage for the communication power system to minimize the electrolytic capacitors with an acceptable hold-up time. The operation principle is analyzed and experimental results of a 1-kW 100-kHz prototype are provided to verify the effectiveness and the advantages of the proposed converter.
Keywords
DC-DC power convertors; phase control; voltage control; zero voltage switching; circulating current; communication power system; conduction loss minimization; electrolytic capacitor minimization; frequency 100 kHz; high input voltage applications; improved three-level structure; input voltage; low-voltage rated power devices; power 1 kW; primary switch voltage stress; primary-side power devices; secondary-side phase-shift control strategy; secondary-side phase-shift-controlled ZVS DC-DC converter; secondary-side power devices; soft-switching dc-dc converter; zero-voltage-switching performance; Capacitors; Inductors; Stress; Switches; Voltage control; Zero voltage switching; High input voltage applications; secondary-side phase-shift control; wide voltage conversion range; zero-voltage switching (ZVS);
fLanguage
English
Journal_Title
Power Electronics, IEEE Transactions on
Publisher
ieee
ISSN
0885-8993
Type
jour
DOI
10.1109/TPEL.2013.2242490
Filename
6449326
Link To Document