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A novel approach for modeling the internal behavior of a PEMFC by using electrical circuits
Authors:A Mohammadi  G Cirrincione  A Djerdir  D Khaburi
Affiliation:1. School of Engineering and Physics (SEP), The University of the South Pacific (USP), Laucala Campus, Suva, Fiji;2. LTI-University of Picardie Jules Verne, 80000, Amiens, France;3. UTBM-FCLAB FR CNRS 3539, 90010, Belfort Cedex, France;4. Iran University of Science & Technology (IUST), 1684613114, Tehran, Iran
Abstract:This paper presents a method for modeling a PEMFC by using electrical circuits. In particular, it focuses on temperature and voltage distribution of fuel cell. The current distribution is calculated by using the Newton-Raphson method in order to estimate the physical parameters (connection resistances) of the model. Several test on a single PEMFC cell have been carried out during this study. In order to validate the model, temperature and voltage sensors have been installed in different segments of a single cell. A distinguishing advantage of the developed model is its ability to detect and localize the faults within the PEMFC cell, as well as simulate different faults in all of the three directions of the PEMFC cell.
Keywords:Fault sensitive model  Newton Raphson  Temperature distribution  Proton exchange membrane fuel cells
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