2009 · INTERNATIONAL JOURNAL OF HYDROGEN ENERGY

Cell layer level generalized dynamic modeling of a PEMFC stack using VHDL-AMS language

Gao, Fei, Blunier, Benjamin, Miraoui, Abdellatif, El-Moudni, Abdellah

Journal
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY
Année
2009
Volume
34
Numéro
13
Pages
5498-5521
Mois
JUL
DOI
10.1016/j.ijhydene.2009.04.069

Abstract

A generalized, cell layer scale proton exchange membrane fuel cell (PEMFC) stack dynamic model is presented using VHDL-AMS (IEEE standard Very High Speed Integrated Circuit Hardware Description Language-Analog and Mixed-Signal Extensions) modeling language. A PEMFC stack system is a complex energy conversion system that covers three main energy domains: electrical, fluidic and thermal. The first part of this work shows the performance and the advantages of VHDL-AMS language when modeling such a complex system. Then, using the VHDL-AMS modeling standards, an electrical domain model, a fluidic domain model and a thermal domain model of the PEMFC stack are coupled and presented together. Thus, a complete coupled multi-domain fuel cell stack I-D dynamic model is given. The simulation results are then compared with a Ballard 1.2 kW NEXA fuel cell system, and show a great agreement between the simulation and experimentation. This complex multi-domain VHDL-AMS stack model can be used for a model based control design or a Hardware-in-the-Loop application. (C) 2009 International Association for Hydrogen Energy. Published by Elsevier Ltd. All rights reserved.

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