Dynamic and control of fuel cell system

Younis, M.A.A. and Rahim, N.A. and Mekhilef, Saad (2008) Dynamic and control of fuel cell system. In: 2008 3rd IEEE Conference on Industrial Electronics and Applications, ICIEA 2008, Singapore.

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Abstract

In this paper, dynamic simulation of a fuel cell system studied using MATLAB/SIMULINK. The paper presents the dynamic model of Proton Exchange Membrane Fuel Cell (PEMFC). The fuel cell output voltage is proportional to the change of the current drawn from the fuel cell model. Phase control full bridge dc/dc converter considered to match the unregulated voltage produced by the fuel cell model to the needed application voltage. PID controller has been selected to regulate the fuel cell output voltage. PWM-based inverter serves as the interface between the dc/dc converter and the ac load. Three-phase inverter used to drive three phase load. Third Harmonic Injection Pulse Width Modulation used to drive the three-phase inverter so that minimum harmonic distortion and maximum usage of the fuel cell voltage on the three-phase inverter output. Simulation results provided to validate the design.

Item Type: Conference or Workshop Item (Paper)
Additional Information: Conference code: 73555 Cited By (since 1996): 1 Export Date: 16 November 2012 Source: Scopus Art. No.: 4582883 doi: 10.1109/ICIEA.2008.4582883 Language of Original Document: English Correspondence Address: Younis, M. A. A.; EE Dept., Unisel, Selangor, Malaysia; email: mahmoud@unisel.edu.my References: Gore, W.L., Advanced Power Assemblies for Polymer Electrolyte Fuel Cells: Portable Power (1999) Proceedings of PORTABLE FUEL CELLS (felix n. buechi, editor). European fuel cell forum, ch-5452 oberrohrdorf, , & Associates, switzerland june; Cook, B., Introduction to fuel cells and hydrogen technology (2002) Engineering Science and Education Journal, 11 (6), pp. 205-216. , Dec, Pages; Larminie, J., Dicks, A., (2000) Fuel Cell Systems Explained, , West Sussex, England, John Wiley & Sons Inc; Mann, R.F., Amphlett, J.C., Hooper, M.A.I., Jensen, H.M., Peppley, B.A., Roberge, P.R., Development and application of a generalised steady-state electrochemical model for a PEM fuel cell (2000) Journal of Power Sources, 86, pp. 173-180; degrees of water flooding (2000) Journal of Power Sources, 86, pp. 181-196; Amphlett, J.C., Mann, R.F., Peppley, B.A., Roberge, P.R., Rodrigues, A., A model predicting transient responses of proton exchange membrane fuel cells (1996) Journal of Power Sources, 61, pp. 183-188; S. Gelfi, J. Pukrushpan, A.G. Dynamics and Control of Low and High Pressure Fuel Cells, Stefanopoulou, H. Peng, in IEEE, American Control Conference 2003Tin Wangl, Markus Reinhard'*Fang 2. Peng'.', and Zhaoming Qian' Design Guideline of the Isolated Dc-dc Converter in Green PowerApplications 3, On page(s): 1756- 1761 3Power Electronics and Motion Control Conference, 2004. IPEMC 2004. The 4th InternationalAndrzej, M., Trzynadlowski, introduction to modern power electronics, , John wiley & sons,inc, ISBN 0-471-15303-6 1998
Uncontrolled Keywords: Cells, Computer simulation, Cytology, Direct energy conversion, Electric batteries, Electrochemistry, Electronics industry, Fuel cells, Fuel systems, Fuels, Industrial electronics, Modulation, Phase interfaces, Proportional control systems, Proton exchange membrane fuel cells (PEMFC), Pulse width modulation, Solid oxide fuel cells (SOFC), Dc/dc converters, Dynamic simulations, Fuel cell modeling, Fuel cell voltage, Fuel-cell system, Full bridge, MATLAB /simulink, Output voltages, PID controllers, Proton-exchange membrane fuel cell, Simulation results, Third harmonics, Three phase, Three-phase inverters, Cell membranes.
Subjects: T Technology > TA Engineering (General). Civil engineering (General)
T Technology > TK Electrical engineering. Electronics Nuclear engineering
Divisions: Faculty of Engineering
Depositing User: Mr Jenal S
Date Deposited: 18 Feb 2013 02:07
Last Modified: 25 Oct 2019 03:51
URI: http://eprints.um.edu.my/id/eprint/4865

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