Open Access System for Information Sharing

Login Library

 

Article
Cited 82 time in webofscience Cited 99 time in scopus
Metadata Downloads

System Level Lumped-Parameter Dynamic Modeling of PEM Fuel Cell SCIE SCOPUS

Title
System Level Lumped-Parameter Dynamic Modeling of PEM Fuel Cell
Authors
Xue, XTang, JSmirnova, AEngland, RSammes, N
Date Issued
2004-06-04
Publisher
Elsevier
Abstract
The goal of this study is to develop a system-level dynamic model of a proton-exchange membrane (PEM) fuel cell that is capable of characterizing the mixed effects of temperature, gas flow, and capacitance, with particular emphasis focused on system transient behavior. The fuel cell system is divided into three control volumes and thus a lumped-parameter model for these sub-systems is established using a combination of intrinsic mechanistic relations and empirical modeling. The dynamic model is simulated using SIMULINK. The analysis illustrates the complicated dynamic interactions between various components and effects within a fuel cell system, and demonstrates the necessity of the proposed approach of separate control volumes. Numerical studies are correlated to a single-cell experimental investigation, and a protocol for parameter identification is explored to refine the model fidelity. The proposed fuel cell model can accurately predict the dynamic behavior and exhibits excellent agreement with experimental results. This model can be readily employed in the optimization and real-time control of PEM fuel cells installed in practical automotive or stationary applications. (C) 2004 Elsevier B.V. All rights reserved.
Keywords
PEM fuel cell; system-level modeling; lumped-parameter model; transient dynamics; control volume approach; POLYMER-ELECTROLYTE; MATHEMATICAL-MODEL; PERFORMANCE; SIMULATION; BEHAVIOR
URI
https://oasis.postech.ac.kr/handle/2014.oak/15315
DOI
10.1016/J.JPOWSOUR.2003.12.064
ISSN
0378-7753
Article Type
Article
Citation
JOURNAL OF POWER SOURCES, vol. 133, no. 2, page. 188 - 204, 2004-06-04
Files in This Item:
There are no files associated with this item.

qr_code

  • mendeley

Items in DSpace are protected by copyright, with all rights reserved, unless otherwise indicated.

Related Researcher

Researcher

Nigel Mark SammesNIGEL, MARK SAMMES
Div. of Advanced Nuclear Enginrg
Read more

Views & Downloads

Browse