DocumentCode
3846094
Title
A Bidirectional Three-Level DC–DC Converter for the Ultracapacitor Applications
Author
Petar J. Grbovic;Philippe Delarue;Philippe Le Moigne;Patrick Bartholomeus
Author_Institution
Research and Development Department, Schneider Toshiba Inverter Europe, Pacy-Sur-Eure, France
Volume
57
Issue
10
fYear
2010
Firstpage
3415
Lastpage
3430
Abstract
Electrochemical double-layer capacitors, which are well known as ultracapacitors, have intensively been used in power conversion applications such as controlled electric drives, active filters, power conditioners, and uninterruptible power supplies. The ultracapacitor is employed as the energy storage device that can be fully charged/discharged within a few seconds. To achieve better flexibility and efficiency, the ultracapacitor is connected to the power conversion system via an interfacing dc-dc power converter. Various topologies are used as the dc-dc power converter: nonisolated two-level single-phase or multiphase interleaved converters and many varieties of isolated soft-switched dc-dc converters. A three-level nonisolated dc-dc converter as a candidate for ultracapacitor applications is proposed and analyzed in this paper. The topology is theoretically analyzed, and design guidelines are given. The modeling and control aspects are discussed. A 5.5-kW prototype was designed, and the proposed topology was experimentally verified on a general-purpose controlled electric drive. Experimental results are presented and discussed.
Keywords
"Supercapacitors","Capacitors","Power conversion","Uninterruptible power systems","Topology","DC-DC power converters","Electrodes","Active filters","Switching converters","Permission"
Journal_Title
IEEE Transactions on Industrial Electronics
Publisher
ieee
ISSN
0278-0046
Type
jour
DOI
10.1109/TIE.2009.2038338
Filename
5371805
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