DocumentCode
74701
Title
Autonomous Polyphase Current-Fed Push–Pull Resonant Converter Based on Ring Coupled Oscillators
Author
Abdolkhani, Ali ; Hu, Aiguo Patrick ; Jianlong Tian
Author_Institution
PowerbyProxi Ltd., Auckland, New Zealand
Volume
3
Issue
2
fYear
2015
fDate
Jun-15
Firstpage
568
Lastpage
576
Abstract
This paper presents an autonomous polyphase current-fed push-pull resonant converter without the need of monitoring and controlling its phase delays. Although the method is valid for multiple phases, a three-phase system is studied to show that accurate 120° phase shift can be realized by coupling three identical magnetic coils of a resonant converter with zero voltage switching (ZVS). Unlike the conventional converters, the proposed converter achieves a full-autonomous operation with automatic startup, full resonance at ZVS, and accurate dynamic balancing between the phases without any additional detection and control. A prototype of a three-phase system operating at 73.5 KHz has been built, and both simulation and practical results have demonstrated that the proposed converter can generate good quality sinusoidal waveforms with ZVS operation and precise phase delays. The proposed converter can be used for polyphase inductive power transfer systems where a generation of a rotating/travelling magnetic field is required.
Keywords
coils; inductive power transmission; magnetic fields; oscillators; resonant power convertors; zero voltage switching; ZVS; autonomous polyphase current-fed push-pull resonant converter; dynamic balancing; magnetic coil; polyphase inductive power transfer system; precise phase delay; ring coupled oscillator; rotating magnetic field generation; three-phase system; travelling magnetic field generation; zero voltage switching; Couplings; Logic gates; Magnetic circuits; Magnetic resonance; Oscillators; Zero voltage switching; Autonomous topology; Coupled oscillators; Current-fed push-pull; Inductive power transfer; Poly-phase resonant converters; Rotating magnetic field; Soft switching; Wireless power transfer; coupled oscillators; current-fed push???pull; inductive power transfer (IPT); polyphase resonant converters; rotating magnetic field; soft switching; wireless power transfer;
fLanguage
English
Journal_Title
Emerging and Selected Topics in Power Electronics, IEEE Journal of
Publisher
ieee
ISSN
2168-6777
Type
jour
DOI
10.1109/JESTPE.2014.2377171
Filename
6974981
Link To Document