DocumentCode :
132273
Title :
A full-bridge three-port converter for renewable energy application
Author :
Wenfei Hu ; Hongfei Wu ; Yan Xing ; Kai Sun
Author_Institution :
Nanjing Univ. of Aeronaut. & Astronaut., Nanjing, China
fYear :
2014
fDate :
16-20 March 2014
Firstpage :
57
Lastpage :
62
Abstract :
Multi-port DC/DC converters have been widely employed in stand-alone renewable power systems to provide stable and continuous power to the electrical loads. A full-bridge three-port converter (FB-TPC) interfacing a renewable source, a storage battery, and a load is proposed. The proposed FB-TPC integrates two Buck-boost converters into the primary side of the full-bridge topology, and the magnetizing inductor of the transformer functions as an inductor. Single stage power conversion between any two of the three ports is achieved, and zero-voltage-switching for all the primary switches are achieved. As a result, high power density and high efficiency can be implemented with the proposed converter. The duty cycle of the buck-boost converter is adopted to realize the maximum power point tracking of the PV cell and the charging control of the battery, while the phase angle between the two switching legs is employed as another control freedom to achieve the output voltage regulation. The operational principles of the proposed converter are analyzed in detail and verified with experimental results.
Keywords :
DC-DC power convertors; bridge circuits; inductors; maximum power point trackers; power conversion; secondary cells; solar cells; switches; transformers; voltage control; zero voltage switching; FB-TPC; PV cell; battery charging control; buck-boost converters; duty cycle; electrical loads; full-bridge three-port converter; full-bridge topology; high power density; inductor; magnetizing inductor; maximum power point tracking; multiport DC-DC converters; renewable power systems; single stage power conversion; storage battery; switches; transformer functions; voltage regulation; zero-voltage-switching; Batteries; Inductors; Load flow; Magnetic separation; Switches; Topology;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Applied Power Electronics Conference and Exposition (APEC), 2014 Twenty-Ninth Annual IEEE
Conference_Location :
Fort Worth, TX
Type :
conf
DOI :
10.1109/APEC.2014.6803289
Filename :
6803289
Link To Document :
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