DocumentCode :
1335499
Title :
Single-Stage Single-Phase High-Step-Up ZVT Boost Converter for Fuel-Cell Microgrid System
Author :
Li, Wuhua ; Li, Weichen ; Deng, Yan ; He, Xiangning
Author_Institution :
Coll. of Electr. Eng., Zhejiang Univ., Hangzhou, China
Volume :
25
Issue :
12
fYear :
2010
Firstpage :
3057
Lastpage :
3065
Abstract :
In this paper, a voltage multiplier cell is inserted in the conventional boost converter operated in continuous conduction mode (CCM) to provide another design freedom for the voltage-gain extension. Thus, the voltage conversion ratio is enlarged and the narrow turn-OFF period is avoided in the high step-up applications. Furthermore, the voltage multiplier cell makes the voltage stress of all the power devices lower than the high output voltage. As a result, the low-voltage-rated power devices can be employed to reduce the conduction losses and to improve the power device reliability. Moreover, zero-voltage switching soft-switching operation is achieved for the power MOSFETs in the whole-switching transition. Zero-current switching turn-OFF condition is provided for the diodes. Therefore, the power device switching losses and the diode reverse-recovery losses are minimized greatly. In addition, the input current ripple is reduced due to the CCM operation compared with most of the published single-stage single-phase high step-up converters, which makes it more advantageous in the hybrid electric vehicles and the fuel-cell power conversion systems. Finally, the experimental results from a 500-W, 36-380-V prototype are provided to validate the effectiveness of the proposed converter.
Keywords :
MOSFET; distributed power generation; fuel cell power plants; power convertors; reliability; zero current switching; zero voltage switching; MOSFET; continuous conduction mode; fuel-cell microgrid system; hybrid electric vehicles; power device reliability; single-stage single-phase high-step-up ZVT boost converter; voltage multiplier cell; voltage-gain extension; whole-switching transition; zero-current switching; zero-voltage switching soft-switching; Capacitors; Converters; Fuel cells; Inductors; Stress; Switches; Zero voltage switching; Continuous conduction mode (CCM) boost converter; fuel-cell microgrid system; high step-up; voltage multiplier cell;
fLanguage :
English
Journal_Title :
Power Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-8993
Type :
jour
DOI :
10.1109/TPEL.2010.2079955
Filename :
5585777
Link To Document :
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