DocumentCode
577344
Title
The design of full-bridge phase-shifting ZVS switch power supply based on adaptive delay control technology
Author
Yan, Xiangwu ; Liu, Hongchang ; Zhao, Huichao ; Zhang, Qingli ; Zhang, Bo
Author_Institution
State Key Lab. of Alternate Electr. Power Syst. with Renewable Energy Sources, North China Electr. Power Univ., Beijing, China
fYear
2012
fDate
24-27 Sept. 2012
Firstpage
152
Lastpage
156
Abstract
Full-bridge phase-shifting zero voltage switching (ZVS) pulse width modulation (PWM) circuit adopts phase control and by resonance, the circuit can realize zero voltage conduct of switch device, eliminate conduct loss. However, the lagging legs of full-bridge circuit is difficult to realize ZVS in a little current. The main circuit topological structure of full-bridge phase-shifting ZVS high frequency power supply based on adaptive delay control technology is applied in this paper. By adaptive delay control technology, it can detect voltage of power grid and bridge arm midpoint in real time, and expand the ZVS operating range by adjusting the triggered time of switch devices. The main transformer and resonance inductance parameters are designed in this paper. The experimental results proved that adaptive delay control technology can expand the ZVS operating range, and improve the efficiency of the power supply.
Keywords
PWM power convertors; adaptive control; delay systems; phase control; power grids; power supply circuits; switching convertors; transformers; zero voltage switching; PWM converter circuit; adaptive delay control technology; bridge arm midpoint; circuit topological structure; conduct loss elimination; full-bridge circuit; full-bridge phase-shifting ZVS switch high frequency power supply design; phase control; power grid; pulse width modulation converter circuit; resonance inductance parameters; switch devices; transformer; zero voltage switching; Decision support systems; Hafnium; adaptive delay control; full-bridge phase-shifting; zero voltage switching;
fLanguage
English
Publisher
ieee
Conference_Titel
Sustainable Energy Technologies (ICSET), 2012 IEEE Third International Conference on
Conference_Location
Kathmandu
ISSN
2165-4387
Print_ISBN
978-1-4577-1870-0
Electronic_ISBN
2165-4387
Type
conf
DOI
10.1109/ICSET.2012.6357390
Filename
6357390
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