Fuel Cells with Proton Exchange Membrane Modeling and Control Techniques

Comprehensive mathematical models with three distinct controllers (PID, FOPID, and fuzzy + PID) for polymer electrolyte fuel cells (PEFCs) are constructed in this work. The models are made to indirectly control the input hydrogen mass flow rate in order to set the output voltage of the PEMFCs at a p...

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Bibliographic Details
Published in:Edison Journal for Electrical and Electronics Engineering Vol. 2; no. 1; pp. 1 - 5
Main Authors: Kumar Singh, Lalitesh, Adnan Jameel, Qahtan
Format: Journal Article
Language:English
Published: Sumerian Scriptum Synthesis Publisher 15-01-2024
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Summary:Comprehensive mathematical models with three distinct controllers (PID, FOPID, and fuzzy + PID) for polymer electrolyte fuel cells (PEFCs) are constructed in this work. The models are made to indirectly control the input hydrogen mass flow rate in order to set the output voltage of the PEMFCs at a predetermined value. The simulation results demonstrate how effectively the es-tablished model fits the task of characterizing a PEFC's performance. While the developed control-lers are capable of stabilizing voltage, the fuzzy + PID controller performs better, exhibiting a re-duced overshoot and a faster response time. 
ISSN:3007-2603
3007-2611
DOI:10.62909/ejeee.2024.001