Fundamentals of Energy and Renewable Energies
Description
Objectives: Make the difference between renewable and no renewable sources of energy Acquire the knowledge, necessary for modeling, simulation, control and design of standalone or a grid connected renewable energy systems. Assess renewable sources potentials. Evaluate the load of a building or a city. Choose the adequate source of energy according to the situation and to the load. Model, simulate, control and correctly connect an assembly of a wind turbine chain or a photovoltaic chain. Design of a standalone or a grid connected renewable energy system. Learning outcomes: Being able to tackle the issues related to renewable energy systems. Being able to make the difference between solar thermal energy and solar photovoltaic energy. Being able to make a technological survey and to innovate. To read and analyze the technical manual of a photovoltaic panel or a wind turbine. Use of simulation tools: Matlab/Simulink and HOMER energy. Chapter 1 : Fundamentals of Energy (Dhaker) Chapter 2 : Renewable Energy Sources (Stéphane) Chapter 3 : Photovoltaic installation (Dhaker) Chapter 4 : Solar Thermal Energy Systems (Dhaker) Chapter 5 : Wind Energy Systems (Dhaker) Content: TP1 : Modeling and simulation of a grid-connected photovoltaic system under Matlab/Simulink/Simpower TP2 : Dimensioning of a hybrid system Photovoltaic-Wind Turbine, Connected to the Network with the HOMER software Site visit (3h) Le Manifeste négaWatt “En route pour la transition énergétique !” Coédition Actes Sud/ Association négaWatt - Collection : Babel. L’autonomie énergétique : Une nouvelle politique pour les énergies renouvelables- Her- mann Scheer – Actes sud. “déchiffrer l’énergie” - Benjamin Dessus – Edition Belin Robyns, B., François, B., Davigny, A., Sprooten, J., & Henneton, A, Electricity production from renewables energies. Book, Wiley, 2012. Dhaker Abbes, Gérard Champenois, André Martinez, Benoit Robyns, Modeling and simulation of a photovoltaic system: An advanced synthetic study, Research paper, 3d International Conference on Systems and Control (ICSC13), 29 to October 31, 2013, in Algiers, Algeria. BIBLIOGRAPHY ABBES, Dhaker, MARTINEZ, André, et CHAMPENOIS, Gérard. Life cycle cost, embodied energy and loss of power supply probability for the optimal design of hybrid power systems. Mathematics and Computers in Simulation, 2014, vol. 98, p. 46-62. Messenger, Roger, and Amir Abtahi. Photovoltaic systems engineering. CRC press, 2017. ABBES, Dhaker. Contribution au dimensionnement et à l’optimisation des systèmes hybrides éoliens-photovoltaïques avec batteries pour l’habitat résidentiel autonome. 2012. Thèse de doctorat. Ph. D. thesis, Université de Poitiers. Ewald F. Fuchs l Mohammad A.S. Masoum, Power Conversion of Renewable Energy Systems, Book, ISBN 978-1-4419-7978-0 e-ISBN 978-1-4419-7979-7, DOI 10.1007/978- 1-4419-7979-7, Springer New York Dordrecht Heidelberg London
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