Universidad de Talca
 
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Date
2022
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Autor
González-Castaño, Catalina
Aalaila, Yahya
Restrepo, Carlos
Revelo-Fuelagan, Javier
Peluffo-Ordoñez, Diego Hernán
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MDPI
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Modelling of Proton Exchange Membrane Fuel Cells with Sinusoidal Approach

Abstract
This paper validates a sinusoidal approach for the proton-exchange membrane fuel cell (PEMFC) model as a supplement to experimental studies. An FC simulation or hardware emulation is necessary for prototype design, testing, and fault diagnosis to reduce the overall cost. For this objective, a sinusoidal model that is capable of accurately estimating the voltage behavior from the operating current value of the DC was developed. The model was tested using experimental data from the Ballard Nexa 1.2 kW fuel cell (FC). This methodology offers a promising approach for static and current-voltage, characteristic of the three regions of operation. A study was carried out to evaluate the effectiveness and superiority of the proposed FC Sinusoidal model compared with the Diffusive Global model and the Evolution Strategy.
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Keywords
Diffusive model , Evolution Strategy , Gaussian model , Proton exchange membrane fuel cell , Sinusoidal model , Voltage-current dynamic response
Citation
DOI
10.3390/membranes12111056
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Acceso abierto
Objetivos de Desarrollo Sostenible
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