DocumentCode
1503678
Title
Implementation of an interleaved resonant converter for high-voltage applications
Author
Chien, C.H. ; Wang, Y.H. ; Lin, B.R. ; Liu, Chi Harold
Author_Institution
Dept. of Electr. Eng., Nat. Cheng-Kung Univ., Tainan, Taiwan
Volume
5
Issue
4
fYear
2012
fDate
4/1/2012 12:00:00 AM
Firstpage
447
Lastpage
455
Abstract
An interleaved resonant converter for high voltage application is presented in this paper. There are two half-bridge legs connected in series and two split capacitors in the adopted circuit to limit the voltage stress of each active switch at one-half of input voltage. Thus MOSFETs with 600V voltage rating can be adopted for 1200V input voltage application. For each half-bridge leg, two series resonant circuits are operated with interleaved one-half of switching period. The secondary windings of two transformers are connected in series in order to balance the transformer primary currents and to share the input current. Thus the sizes of the transformer core and bobbin are reduced. The centre-tapped rectifier is used on the output side to reduce the conduction loss with one diode voltage drop. Based on the resonant behaviour, MOSFETs are turned on at ZVS, and rectifier diodes can be turned off at ZCS if the switching frequency is less than the series resonant frequency. Two half-bridge legs are operated with one-fourth of switching period such that the ripple currents at input and output sides arc reduced. Finally, experiments with a 960W prototype, verifying the effectiveness of the proposed converter, are described.
Keywords
capacitors; diodes; field effect transistor switches; power semiconductor switches; rectifiers; resonant power convertors; switching convertors; transformer windings; zero current switching; zero voltage switching; MOSFET; ZCS; ZVS; centre-tapped rectifier; conduction loss reduction; diode voltage drop; half-bridge legs; high-voltage application; interleaved resonant converter; power 960 W; rectifier diodes; ripple current; series resonant circuit; series resonant frequency; split capacitor; switching frequency; transformer core; transformer primary current; transformer winding; voltage 600 V; voltage rating; voltage stress;
fLanguage
English
Journal_Title
Power Electronics, IET
Publisher
iet
ISSN
1755-4535
Type
jour
DOI
10.1049/iet-pel.2011.0088
Filename
6189851
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