Title :
Dual-input soft-switched DC-DC converter with isolated current-fed half-bridge and voltage-fed full-bridge for fuel cell or photovoltaic systems
Author :
Zhe Zhang ; Thomsen, Ole C. ; Andersen, Michael A. E.
Author_Institution :
Dept. of Electr. Eng., Tech. Univ. of Denmark, Lyngby, Denmark
Abstract :
This paper introduces a new zero-voltage-switching (ZVS) isolated DC-DC converter with two input ports which can be utilized in hybrid energy systems, for instance, in a fuel cell and super-capacitor system. By fully using two high frequency transformers, the proposed converter can effectively integrate a current-fed boost half-bridge (BHB) and a full-bridge (FB) into one equivalent circuit configuration which has dual-input ability and additionally it can reduce the number of the power devices. With the phase-shift control, it can achieve zero-voltage switching turn-on of active switches and zero-current switching (ZCS) turn-off of diodes leading to negligible reverse recovery loss. Voltage conversion ratio is higher compared to the conventional boost converter owing to the BHB circuit and the corresponding control. Finally, a 25~50 V input, 300~400 V output prototype with a 600 W nominal power rating are built up and tested to demonstrate the effectiveness of the proposed converter topology.
Keywords :
DC-DC power convertors; equivalent circuits; fuel cells; photovoltaic power systems; zero current switching; zero voltage switching; BHB circuit; FB; ZCS turn-off; ZVS; active switches; boost converter; converter topology; dual-input soft-switched DC-DC converter; equivalent circuit configuration; fuel cell; high frequency transformers; hybrid energy systems; isolated current-fed half-bridge converter; phase-shift control; photovoltaic systems; power 600 W; power devices; reverse recovery loss; supercapacitor system; voltage conversion ratio; voltage-fed full-bridge converter; zero-current switching turn-off; zero-voltage switching turn-on; Boost half-bridge (BHB); DC converter; fuel cell; hybrid; phaseshift control; soft-switched;
Conference_Titel :
Applied Power Electronics Conference and Exposition (APEC), 2013 Twenty-Eighth Annual IEEE
Conference_Location :
Long Beach, CA
Print_ISBN :
978-1-4673-4354-1
Electronic_ISBN :
1048-2334
DOI :
10.1109/APEC.2013.6520576