DocumentCode
897596
Title
A Modular Fuel Cell, Modular DC–DC Converter Concept for High Performance and Enhanced Reliability
Author
Palma, Leonardo ; Enjeti, Prasad N.
Author_Institution
Univ. de Concepcion, Concepcion
Volume
24
Issue
6
fYear
2009
fDate
6/1/2009 12:00:00 AM
Firstpage
1437
Lastpage
1443
Abstract
Fuel cell stacks produce a DC output with a 2:1 variation in output voltage from no-load to full-load. The output voltage of each fuel cell is about 0.4 V at full-load, and several of them are connected in series to construct a stack. An example 100 V fuel cell stack consists of 250 cells in series and to produce 300 V at full-load requires 750 cells stacked in series. Since fuel cells actively convert the supplied fuel to electricity, each cell requires proper distribution of fuel, humidification, coupled with water/thermal management needs. With this added complexity, stacking more cells in series decreases the reliability of the system. For example, in the presence of bad or malperforming cell/cells in a stack, uneven heating coupled with variations in cell voltages may occur. Continuous operation under these conditions may not be possible or the overall stack output power is severely limited. In this paper, a modular fuel cell powered by a modular DC-DC converter is proposed. The proposed concept electrically divides the fuel cell stack into various sections, each powered by a DC-DC converter. The proposed modular fuel cell powered by modular DC-DC converter eliminates many of these disadvantages, resulting in a fault tolerant system. A design example is presented for a 150-W, three-section fuel cell stack and DC-DC converter topology. Experimental results obtained on a 150-W, three-section proton exchange membrane (PEM) fuel cell stack powered by a modular DC-DC converter are discussed.
Keywords
DC-DC power convertors; fault tolerance; power system faults; power system reliability; proton exchange membrane fuel cells; fault tolerant system; fuel distribution; modular DC-DC converter; power 150 W; power system reliability; proton exchange membrane; proton exchange membrane stack; thermal management; water management; DC-DC power converters; Energy conversion; Energy management; Fuel cells; Heating; Load management; Power system reliability; Stacking; Thermal management; Voltage; DC–DC converters; fuel cells; power conditioning; renewable power;
fLanguage
English
Journal_Title
Power Electronics, IEEE Transactions on
Publisher
ieee
ISSN
0885-8993
Type
jour
DOI
10.1109/TPEL.2009.2012498
Filename
4939358
Link To Document