DocumentCode :
15987
Title :
Novel Bidirectional Snubberless Naturally Commutated Soft-Switching Current-Fed Full-Bridge Isolated DC/DC Converter for Fuel Cell Vehicles
Author :
Pan Xuewei ; Rathore, Akshay Kumar
Author_Institution :
Dept. of Electr. & Comput. Eng., Nat. Univ. of Singapore, Singapore, Singapore
Volume :
61
Issue :
5
fYear :
2014
fDate :
May-14
Firstpage :
2307
Lastpage :
2315
Abstract :
A novel naturally clamped zero-current commutated soft-switching bidirectional current-fed full-bridge isolated dc/dc converter is proposed. This proposed secondary-modulation technique naturally clamps the voltage across the primary-side devices with zero-current commutation, eliminating the necessity for active-clamp circuit or passive snubbers. Switching losses are reduced significantly owing to zero-current switching of primary-side devices and zero-voltage switching of secondary-side devices. Soft switching and voltage clamping are inherent and load independent. The voltage across primary-side devices is independent of duty cycle with varying input voltage and output power and clamped at rather low reflected output voltage, enabling the use of semiconductor devices of low voltage rating. These merits make the converter promising for fuel cell vehicles application, front-end dc/dc power conversion for fuel cell inverters, and energy storage. Steady-state operation, analysis, design, simulation results using PSIM 9.0.4, and experimental results are presented.
Keywords :
DC-DC power convertors; fuel cell vehicles; zero current switching; zero voltage switching; PSIM 9.0.4; active-clamp circuit; bidirectional snubberless naturally commutated DC-DC converter; duty cycle; energy storage; front-end DC-DC power conversion; fuel cell inverters; fuel cell vehicles; low reflected output voltage; low voltage rating; passive snubbers; primary-side devices; secondary-modulation technique; secondary-side devices; soft-switching current-fed full-bridge isolated DC-DC converter; switching losses; voltage clamping; zero-current commutation; zero-current switching; zero-voltage switching; Bidirectional; current-fed converter; fuel cell vehicle (FCV); natural clamping; soft switching;
fLanguage :
English
Journal_Title :
Industrial Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0278-0046
Type :
jour
DOI :
10.1109/TIE.2013.2271599
Filename :
6549192
Link To Document :
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