DocumentCode :
1087743
Title :
Design of a Wide Input Range DC–DC Converter With a Robust Power Control Scheme Suitable for Fuel Cell Power Conversion
Author :
Todorovic, Maja Harfman ; Palma, Leonardo ; Enjeti, Prasad N.
Author_Institution :
Texas A&M Univ., College Station
Volume :
55
Issue :
3
fYear :
2008
fDate :
3/1/2008 12:00:00 AM
Firstpage :
1247
Lastpage :
1255
Abstract :
In this paper, an analysis and design of a wide input range dc-dc converter is proposed along with a robust power control scheme. The proposed converter and its control are designed to be compatible with a fuel cell power source, which exhibits 2 : 1 voltage variation as well as a slow transient response. The proposed approach consists of two stages: a three-level boost converter stage cascaded with a current-fed two-inductor boost converter topology, which has a higher voltage gain and provides galvanic isolation from the input source. The function of the front-end boost converter stage is to maintain a constant voltage at the input of the cascaded dc-dc converter to ensure optimal performance characteristics and high efficiency. At the output of the first boost converter, a battery or ultracapacitor energy storage is connected to handle slow transient response of the fuel cell (200 W/min). The robust features of the proposed control system ensure a constant output dc voltage for a variety of load fluctuations, thus limiting the power being delivered by the fuel cell during a load transient. Moreover, the proposed configuration simplifies power management and can interact with the fuel cell controller. Simulation and the experimental results confirm the feasibility of the proposed system.
Keywords :
DC-DC power convertors; fuel cells; power control; DC-DC converter; current-fed two-inductor boost converter topology; fuel cell power conversion; robust power control scheme; three-level boost converter stage; Batteries; DC-DC power converters; Fuel cells; Galvanizing; Power control; Power conversion; Robust control; Topology; Transient response; Voltage control; Battery; DC–DC power conversion; current control; energy storage; fuel cells; hybrid power source; supercapacitors;
fLanguage :
English
Journal_Title :
Industrial Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0278-0046
Type :
jour
DOI :
10.1109/TIE.2007.911200
Filename :
4459838
Link To Document :
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