DocumentCode :
2796308
Title :
Improvement of light load efficiency of Dual Active Bridge DC-DC converter by using dual leakage transformer and variable frequency
Author :
Guidi, G. ; Pavlovsky, M. ; Kawamura, A. ; Imakubo, T. ; Sasaki, Y.
Author_Institution :
Yokohama Nat. Univ., Yokohama, Japan
fYear :
2010
fDate :
12-16 Sept. 2010
Firstpage :
830
Lastpage :
837
Abstract :
Dual Active Bridge (DAB) topology performs very well for converter output/input ratio close to transformer ratio. However, if a considerable deviation from the transformer ratio is required the conversion efficiency drops significantly. The approach presented in this paper uses variable AC link reactance to improve the DAB performance during operation at light load. The variable reactance is obtained by using a variable frequency in combination with so-called dual leakage transformer. Simple phase-shift control is used, and the switching frequency is varied in order to minimize the peak transformer current. In addition to that, the dual leakage transformer proposed in this paper has a winding configuration yielding a high leakage inductance at low currents and low leakage inductance at high currents. A fully operational prototype was built, demonstrating a power density of 7.1 kW/Liter with forced air cooling, and a peak efficiency at rated 4 kW load equal to 96.6 %. The presented variable reactance approach resulted in more than 10 % efficiency improvement over the conventional DAB design in the most critical point.
Keywords :
DC-DC power convertors; transformer windings; transformers; dual active bridge DC-DC converter; dual leakage transformer; light load efficiency; phase shift control; power 4 kW; transformer current; variable AC link reactance; winding configuration; Bridge circuits; Circuit faults; Converters; Inductance; Inductors; Switches; Windings; DC-DC converter; Dual Active Bridge; Efficiency;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Energy Conversion Congress and Exposition (ECCE), 2010 IEEE
Conference_Location :
Atlanta, GA
Print_ISBN :
978-1-4244-5286-6
Electronic_ISBN :
978-1-4244-5287-3
Type :
conf
DOI :
10.1109/ECCE.2010.5617909
Filename :
5617909
Link To Document :
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