DocumentCode
72230
Title
A New Resonant Modular Multilevel Step-Down DC–DC Converter with Inherent-Balancing
Author
Xiaotian Zhang ; Green, T.C. ; Junyent-Ferre, Adria
Author_Institution
Dept. of Electr. Eng., Imperial Coll. London, Imperial, CA, USA
Volume
30
Issue
1
fYear
2015
fDate
Jan. 2015
Firstpage
78
Lastpage
88
Abstract
Modular multilevel converters (MMCs) have become increasingly interesting in dc-dc applications, as there is a growing demand for dc-dc converters in high-voltage applications. Power electronics transformers can be used for high step-down ratio dc-dc power conversion, with high power rating and efficiency achieved. However, this arrangement requires a large number of high isolation voltage transformers and a complicated balancing control scheme. To provide a simple solution with inherent voltage balancing, this paper presents a new resonant MMC topology for dc-dc conversion. The proposed converter achieves high-voltage step-down ratio depending on the number of submodules. The converter also exhibits simplicity and scalability with no necessary requirement of high-voltage isolation transformers. By using phase-shift control, a much higher converter operating frequency is achieved compared to the switching frequency. Resonant conversion is achieved between the series inductor and submodule capacitors. The operation principle and theoretical analysis are presented in this paper, which have been verified by experimental results based on a bench-scale prototype.
Keywords
DC-DC power convertors; capacitors; inductors; potential transformers; balancing control scheme; high step-down ratio dc-dc power conversion; high-voltage isolation transformers; inherent balancing; phase-shift control; power electronics transformers; resonant MMC topology; resonant modular multilevel step-down dc-dc converter; series inductor; submodule capacitors; voltage transformers; Capacitors; Frequency conversion; Inductors; Resonant frequency; Switches; Switching frequency; Zero current switching; DC–DC conversion; modular multilevel converters (MMCs); phase-shift control; resonant converter; step-down ratio;
fLanguage
English
Journal_Title
Power Electronics, IEEE Transactions on
Publisher
ieee
ISSN
0885-8993
Type
jour
DOI
10.1109/TPEL.2014.2301974
Filename
6719515
Link To Document