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Fuzzy Logic Based Constant Power Control of a Proton Exchange Membrane Fuel Cell

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Warianty tytułu
PL
Sterowanie baterią z membraną o wymianie protonowej z wykorzystaniem logiki rozmytej
Języki publikacji
EN
Abstrakty
EN
Proton exchange membrane fuel cells have been receiving more and more attention these recent years. Maintaining a fuel cell system in correct operating conditions requires good system control. The mathematical model of proton exchange membrane fuel cells is described in this paper and a simulation platform is set up, and then the fuzzy logic controller is designed for the proton exchange membrane fuel cell to realize constant power output. Simulation results show that the use of the proposed fuzzy controllers can get good control effects.
PL
Przedstawiono możliwości modelowania baterii wykorzystujących membranę z wymianą protonową. Zastosowano kontroler wykorzystujący logikę rozmytą dla sterowania mocą wyjściową.
Rocznik
Strony
72--75
Opis fizyczny
Bibliogr. 18 poz., tab., schem.
Twórcy
autor
autor
  • Shenyang University of Chemical Technology, China
Bibliografia
  • [1] Das S., Mangwani N., Recent Development Of Microbial Fuel Cell: a Review. Journal of Scientific & Industrial Research, 69 (2010), 727-731
  • [2] Logan B.E., Scaling up Microbial Fuel Cells and Other Bioelectrochemical Systems. Applied Microbiology and Biotechnology, 85 (2010), No. 6. 1665–1671.
  • [3] Pukrushpan J., Stefanopoulou A., Peng H., Control of fuel cell breathing. IEEE Control Systems, 24 (2004), No. 2, 30-46
  • [4] Kunusch C., Puleston P.F., Mayosky M.A., Riera J., Sliding Mode Strategy for PEM Fuel Cells Stacks Breathing Control Using a Super-Twisting Algorithm. IEEE Transactions on Control Systems Technology, 17 (2009), No. 1, 167-174
  • [5] Kaytakoglu S., Akyalm L., Optimization of Parametric Performance of a PEMFC. International Journal of Hydrogen Energy, 32 (2007), No. 17, 4418-4423
  • [6] Riascos L.A.M., Pereira D.D., Controlling Operating Temperature in PEM fuel cells. ABCM Symposium Series in Mechatronics, 4 (2010), 137-146
  • [7] Sala A., Guerra T., Babuska R., Perspectives of Fuzzy Systems and Control. Fuzzy Sets and Systems, 156 (2005), No. 3, 432-444
  • [8] Nhivekar G.S., Nirmale S.S., Mudholker R.R., Implementation of Fuzzy Logic Control Algorithm in Embedded Microcomputers for Dedicated Application. InternationalJournal of Engineering, Science and Technology, 3 (2011), No. 4, 276-283
  • [9] Corcau J.I., Stoenescu E., Fuzzy Logic Controller as a Power System Stabilizer. International Journal of Circuits, Systems and Signal Processing, 3 (2007), No. 1, 266-272
  • [10] Horiuchi J., Kishimoto M., Application of Fuzzy Control to Industrial Bioprocesses in Japan. Fuzzy Sets and Systems, , 128 (2002), No. 1, 117-124
  • [11] Carnes B., Djilal N., Systematic Parameter Estimation for PEM Fuel Cell Models. Journal of Power Sources, 144 (2005), No. 1, 83–93
  • [12] Moreira M.V., Silva G.E., A Practical Model for Evaluating the Performance of Proton Exchange Membrane Fuel Cells. Renewable Energy, 34 (2009), No. 7, 1734-1741
  • [13] Rezazadeh A., Sedighizadeh M., Karimi M., Proton Exchange Membrane Fuel Cell Control Using a Predictive Control Based on Neural Network. International Journal of Computer and Electrical Engineering, 2 (2010), No. 1, 81-85
  • [14] Youssef M.E., Nadi K.E., Khalil M.H., Lumped Model for Proton Exchange Membrane Fuel Cell (PEMFC). International Journal of Electrochemical Science, 5 (2010), 267-277
  • [15] Mammar K., Chaker A., Fuzzy Logic Control of Fuel Cell System for Residential Power Generation. Journal of Electrical Engineering, 60 (2009), No. 6, 328-334
  • [16] Rezazadeh A., Askarzadeh A., Sedighizadeh M., Adaptive Inverse Control of Proton Exchange Membrane Fuel Cell Using RBF Neural Network. International Journal of Electrochemical Science, 6 (2011), 3105 - 3117
  • [17] Fan L.P., Simulation Study on the Influence Factors of Generated Output of Proton Exchange Membrane Fuel Cell. Applied Mechanics and Materials, 121 (2012), 2887-2891
  • [18] Correa J.M., Farret F.A., Canha L.N., Simoes M.G., An Electrochemical-based Fuel-Cell Model Suitable for Electrical Engineering Automation Approach. IEEE Transactions on Industrial Electronics, 51 (2004), No. 5, 1103-1112
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPOK-0037-0017
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