DocumentCode
267338
Title
Single-phase bidirectional bridge topology without electrolytic capacitor at the DC side
Author
Biao Liang ; Guo-Rong Zhu ; Xiao-Bin Fu ; Wei-Xing Liu ; Hao-Ran Wang
Author_Institution
Sch. of Autom., Wuhan Univ. of Technol., Wuhan, China
fYear
2014
fDate
5-8 Nov. 2014
Firstpage
821
Lastpage
825
Abstract
The DC current of the single-phase inverter or rectifier contains low frequency ripple whose frequency is twice that of the AC voltage. Traditionally, electrolytic capacitor is used to eliminate these ripple, but it has relatively short lifespan and affect the lifetime of the entire inverter or rectifier system. In this paper, a single-phase bidirectional bridge topology without electrolytic capacitor is presented. The bidirectional topology combines a conventional converter and a pair of additional switches. In addition, the bidirectional bridge topology can control the pulsation power at the ac side due to the two differential capacitors, which is produced by splitting the AC filter capacitor of the conventional inverter or rectifier symmetrically. The DC current ripple of the bridge converter can be significantly reduced without the electrolytic capacitors (E-Cap). Theoretical analysis and results are provided to explain the operation and showcase the performance of the bidirectional bridge topology. All the experimental results are provided to support the feasibility of the proposed work.
Keywords
bridge circuits; capacitors; filters; rectifiers; switches; switching convertors; AC filter capacitor; E-Cap; converter; differential capacitor; electrolytic capacitor; pulsation power control; rectifier system; single-phase bidirectional bridge topology; single-phase inverter; switch; Bridge circuits; Capacitors; Fuel cells; Inverters; Rectifiers; Switches; Topology; ac side; bidirectional; low frequency ripple; pulsation power; splitting;
fLanguage
English
Publisher
ieee
Conference_Titel
Electronics and Application Conference and Exposition (PEAC), 2014 International
Conference_Location
Shanghai
Type
conf
DOI
10.1109/PEAC.2014.7037964
Filename
7037964
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