DocumentCode :
118110
Title :
Design OF ZVT boost converter with coupled inductors
Author :
Senthilnathan, A. ; Santhiya, R. ; Angayarkanni, S.
fYear :
2014
fDate :
6-8 March 2014
Firstpage :
1
Lastpage :
6
Abstract :
A novel isolated zero-voltage-transition (ZVT) boost converter with coupled inductors is proposed in this paper to satisfy the high power, high step-up and isolated requirements. In the proposed converter, the input-parallel configuration is adopted to share the large input current and to reduce the conduction losses, while the output-series structure is employed to double the output voltage gain. Consequently, a transformer with a low turns ratio can be applied, which makes the transformer design and optimize easily. Moreover, the active clamp circuits are employed to reduce the switch voltage stress and to recycle the energy stored in the leakage inductance. The ZVT is achieved during the whole switching transition for all the active switches, so the switching losses can be reduced greatly. Furthermore, the diode reverse-recovery problem is partly solved due to the leakage inductance. In addition, the magnetic integration technology is applied to improve the efficiency and to reduce the magnetic component size. Finally, a 12-V input 96-V output 1-kW prototype operating with 100-kHz switching frequency is built and tested to demonstrate the effectiveness of the proposed converter.
Keywords :
DC-DC power convertors; active networks; design engineering; inductance; magnetic leakage; power semiconductor diodes; power transformers; DC-DC converter; ZVT boost converter design; active clamp circuits; conduction loss reduction; coupled inductors; diode reverse-recovery problem; energy storage recycling; frequency 100 kHz; input-parallel configuration; large input current sharing; leakage inductance; magnetic component size reduction; magnetic integration technology; novel isolated zero-voltage-transition boost converter; output voltage gain; output-series structure; power 1 kW; switch voltage stress reduction; switching transition; transformer design; voltage 12 V; voltage 96 V; Clamps; Inductors; Integrated circuit modeling; Magnetomechanical effects; Mathematical model; Switches; Switching circuits;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Green Computing Communication and Electrical Engineering (ICGCCEE), 2014 International Conference on
Conference_Location :
Coimbatore
Type :
conf
DOI :
10.1109/ICGCCEE.2014.6922442
Filename :
6922442
Link To Document :
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