A simple electric circuit model for proton exchange membrane fuel cells |
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Authors: | Stavros Lazarou Eleftheria Pyrgioti Antonio T. Alexandridis |
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Affiliation: | aDepartment of Electrical and Computer Engineering, University of Patras, Rion, 26500, Patras, Greece |
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Abstract: | A simple and novel dynamic circuit model for a proton exchange membrane (PEM) fuel cell suitable for the analysis and design of power systems is presented. The model takes into account phenomena like activation polarization, ohmic polarization, and mass transport effect present in a PEM fuel cell. The proposed circuit model includes three resistors to approach adequately these phenomena; however, since for the PEM dynamic performance connection or disconnection of an additional load is of crucial importance, the proposed model uses two saturable inductors accompanied by an ideal transformer to simulate the double layer charging effect during load step changes. To evaluate the effectiveness of the proposed model its dynamic performance under load step changes is simulated. Experimental results coming from a commercial PEM fuel cell module that uses hydrogen from a pressurized cylinder at the anode and atmospheric oxygen at the cathode, clearly verify the simulation results. |
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Keywords: | Fuel cell Distributed generation PEM circuit model |
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