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Modeling of a Storage System Integrated into a Hybrid System (PV/H2/PEMFC)


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DOI: https://doi.org/10.15866/ireme.v16i4.21781

Abstract


In this study, the performance of a stationary autonomous process for generating thermoelectric energy by coupling a photovoltaic field and a hydrogen storage system (SEH), consisting of a gas storage unit, an electrolyzer, and a fuel cell in a high-temperature environment has been assessed. The Photovoltaic cell (fuel supply system) is an advanced and powerful electrification system that combines solar energy with hydrogen generation via electrolysis and hydrogen storage in a fuel cell. The present simulation models for all the system components have simulated the SEH hybrid power system in Matlab / Simulink (PVH2PEMFC). As a result, the performance of the system is assessed and examined under various operating conditions. The total energy control for energy management between the systems of various energy sources has been discussed.
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Keywords


Photovoltaic Cell; Fuel Cell; Electrolyzer; Energy Storage; Hybrid System; Modeling

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References


Y. Himri, A. Boudghene Stambouli, B. Draoui, (2009). Prospects of wind farm development in Algeria, Desalination 239, 130-138.
https://doi.org/10.1016/j.desal.2008.03.013

Sonia Leva, Dario Zaninelli. (2009). Hybrid renewable energy-fuel cell system: Design and performance evaluation, Electric Power Systems Research 79, 316-324.
https://doi.org/10.1016/j.epsr.2008.07.002

A. Zangeneh, S. Jadid, A.Rahimi-Kian. (2009). Promotion strategy of clean technologies in distributed generation expansion planning, Renewable Energy 34, 2765-2773
https://doi.org/10.1016/j.renene.2009.06.018

A.Gupta, R. P. Saini, et M. P. Sharma. (2008). Computerized Modelling of Hybrid Energy System-Part I: Problem Formulation and Model Development. 5th International Conference on Electrical and Computer Engineering ICECE 2008, 20-22 December Dhaka, Bengladesh.
https://doi.org/10.1109/ICECE.2008.4769164

M.T Benmessaoud, PV-SOFC Hybrid Power System, Stationary Realization Case Study, Doctoral Thesis, University of science Mohamed boudiaf-ORAN, 2012.

F. Z .Zerhouni, M. H Zerhouni, M. Zegrar, A. Boudghene Stambouli,. (2014). Study of Hybrid Sustainable Energy System Based on PEM Fuel Cells and Photovoltaic-Module Power Generator, Source Title: Sustainable Practices: Concepts, Methodologies, Tools, and Applications, pp.1357-1379.
https://doi.org/10.4018/978-1-4666-4852-4.ch076

R.Chedid and S.Rahman. (1997). Unit Sizing and Control of Hybrid Wind-Solar Power Systems, IEEE Transactions on Energy Conversion, Vol. 12, No. 1.
https://doi.org/10.1109/60.577284

W.D. Kellogg, M.H. Nehrir, G. Venkataramanan and V. Gerez, (1998). Generation Unit Sizing and Cost Analysis for Stand-Alone Wind, Photovoltaic, and Hybrid Wind PV Systems, IEEE Transactions on Energy Conversion, Vol. 13, No. 1.
https://doi.org/10.1109/60.658206

I.A. Adejumobi, S.G. Oyagbinrin, F. G. Akinboro and M.B. Olajide, Hybrid Solar and Wind Power: an Essential for Information Communication Technology Infrastructure and People in Rural Communities, IJRRAS 9 (1), October 2011.

B. S. Borowy and Z. M. Salameh, Optimum Photovoltaic Array Size for a Hybrid Wind/PV System, IEEE Transactions on Energy Conversion, Vol. 9, No. 3, September 1994.
https://doi.org/10.1109/60.326466

T. Jacob andS. Arun, Modeling of Hybrid Wind and Photovoltaic Energy System using a New Converter Topology, Electrical and Electronics Engineering: An International Journal (EEEIJ) Vol.1, No.2, August 2012.
https://doi.org/10.1109/ICGT.2012.6477986

M. Muralikrishnan and V. Lakshminarayana, Hybrid (Solar and Wind) Energy System for Rural Electrification, ARPN Journal of Engineering and Applied Sciences, Vol. 3, No. 5, October 2008.

S. Rehman, Md. Mahbub Alam, J.P. Meyer and L. M. Al-Hadhrami, Feasibility study of a Wind-PV-Diesel Hybrid Power System for a village, Renewable Energy 38,pp. 258-268,2012. University Mohamed Cherif Messaadia de Souk-Ahras 97.
https://doi.org/10.1016/j.renene.2011.06.028

D. Rekioua, Z. Roumila and T. Rekioua, Study of a Hybrid Photovoltaic - Wind - Diesel power plant, Renewable Energy Review, Vol. 11, N°4, pp. 623-633, 2008.

M. S. Ngan and C. W. Tan, Assessment of Economic Viability for PV / wind/ diesel Hybrid Energy System in Southern Peninsular Malaysia, Renewable and Sustainable Energy Reviews 16, pp.634-647, 2012.
https://doi.org/10.1016/j.rser.2011.08.028

A. Ould Mohamed Yahya, A. Ould Mahmoud and I.Youm, Modeling of an Integrated Storage System in a Hybrid System (PV / Wind / Diesel), Revue des Energies Renouvelables Vol. 10 No. 2, pp.205-214, 2007.

A. Kaabeche, M. Belhamel, R. Ibtiouen and S. Moussa, Optimization of a totally autonomous Hybrid (Wind - Photovoltaic) system, Revue des Energies Renouvelables Vol. 9 N.3, p. 199-209, 2006.

T. R. Mtshali, G. Coppez, S. Chowdhury and S. P. Chowdhury, Simulation and modelling of PV-wind-battery hybrid power system, 2011 IEEE Power and Energy Society General Meeting, 2011, pp. 1-7.
https://doi.org/10.1109/PES.2011.6039312

E. Cetin, A micro-DC power distribution system for a residential application energized by photovoltaic-wind/fuel cell hybrid energy systems, Energy Build, vol. 42, pp. 1344, 2010.
https://doi.org/10.1016/j.enbuild.2010.03.003

H. Ibrahim, Study and Design of a Hybrid Wind-Diesel Electricity Generator with Compressed Air Storage Element, Doctoral Thesis, University of Quebec, 2010.

E. Muljadi and H.E. McKenna,' Power Quality Issues in aHybrid Power System'', National Renewable Energy Laboratory, September 2001.

A. Mokhtari, Diagnosis of Hybrid Systems: Development of a Method Combining Detection by Classification and Dynamic Simulation, Doctoral Thesis, University of Toulouse, 2007.

I. Tegani, Optimization and control of a micro smart grid using a fuel cell, super capacitors, batteries, a wind turbine and a photovoltaic source, Doctoral Thesis, University of Mohamed Khider - Biskra, 2016.

Z. Houari, Contribution to the modeling and control of a system based on photovoltaic cells and fuel cells, Doctoral Thesis, University of ORAN, 2017.

N. Wamba Optimizing System Management Electrical Energy Hybrid Pv-Pac Electrolyser, Doctoral Thesis, University of DOUALA, 2018.

S. Khoudiri, System Control and Optimization Hybrid Energetics (SEH): Application to renewable energy Doctoral Thesis, University Mohamed Khider - Biskra, 2018.

Tiss, F., Chouikh, R. & Guizani, A.(2013). A numerical investigation of the effects of membrane swelling in polymer electrolyte fuel cells. Energy Conversion and Management, 67, 318-324.
https://doi.org/10.1016/j.enconman.2012.12.006

Ghabara, T., Chouikh, R., Guizani, A., A Parametric Study of PEMFC and SOFC Fuel Cells by Using a CFD Model, (2015) International Review of Mechanical Engineering (IREME), 9 (5), pp. 457-465.
https://doi.org/10.15866/ireme.v9i5.7140

Ghabara, T., Tiss, F., Chouikh, R., Guizani, A., Modeling a Fuel Cell Hybrid Vehicle, (2018) International Review of Mechanical Engineering (IREME), 12 (8), pp. 684-693.
https://doi.org/10.15866/ireme.v12i8.14852


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