DocumentCode :
24563
Title :
Development of an HT PEM Fuel Cell Emulator Using a Multiphase Interleaved DC–DC Converter Topology
Author :
De Beer, Chris ; Barendse, Paul ; Khan, Azeem
Author_Institution :
Dept. of Electr. Eng., Univ. of Cape Town, Cape Town, South Africa
Volume :
28
Issue :
3
fYear :
2013
fDate :
Mar-13
Firstpage :
1120
Lastpage :
1131
Abstract :
This paper presents a new emulator topology for a high-temperature (HT) proton-exchange membrane (PEM) fuel cell (FC). Emulators are used to predict FC behavior and facilitate development of the power-conditioning subsystems. In this paper, the high-temperature system is modeled and emulated both in the steady state and transient domains. The model is tailored to operate effectively in real time on the emulator hardware and to deliver acceptable performance during steady-state and dynamic conditions. In particular, a two-stage approach is applied to the design of the emulator hardware. The first stage is based on a multiphase interleaved converter, capable of maximizing ripple cancellation, while ensuring rapid dynamic performance through the use of reduced filter components. These benefits are only apparent by operating the converter at its critical duty ratio. This is achieved through the introduction of a power-stage converter, which tracks the steady-state behavior of the FC, allowing the multiphase converter to account for the rapid transient behavior. This operating principle improves the quality of the output dc voltage and dynamic performance beyond that achieved by conventional emulator topologies. The experimental results of the FC stack, HT PEM FC model and emulator are presented to confirm the performance of the proposed system.
Keywords :
DC-DC power convertors; proton exchange membrane fuel cells; FC stack; HT PEMFC emulator; HT PEMFC model; emulator hardware; high-temperature proton-exchange membrane fuel cell; multiphase interleaved DC-DC converter topology; power-conditioning subsystems; power-stage converter; reduced filter components; transient domains; two-stage approach; Capacitance; Fuel cells; Steady-state; Topology; Transfer functions; Transient analysis; Voltage control; Converter; emulation; fuel cell (FC); multiphase;
fLanguage :
English
Journal_Title :
Power Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-8993
Type :
jour
DOI :
10.1109/TPEL.2012.2208481
Filename :
6238380
Link To Document :
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