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Multi-Objective design optimization of a hybrid PV-WIND-BATTERY SYSTEM
ParDhaker AbbesRÉSUMÉ / ABSTRACT : Stand alone hybrid renewable energy systems are more reliable than a system with a single source of energy. However, its design is a crucial issue. In this context, we propose a triple Multi-Objective design, minimizing, simultaneously, Life Cycle Cost (LCC), Embodied Energy (EE) and Loss of Power Supply Probability (LPSP). Optimization…
Emulation of a hybrid PV-Wind-Battery system
ParDhaker AbbesRÉSUMÉ / ABSTRACT : This paper is focused on the design and the implementation of a hybrid PV-wind power system with batteries. It aims to emulate the behavior of a hybrid power system in order to face load consumption variations. Final system includes relevant contributions such as quality of emulator (a large number of parameters…
Dimensioning a hybrid electrification system (PV / WT / DG + battery) using a dynamic simulation
ParDhaker AbbesRÉSUMÉ / ABSTRACT : The aim of this paper is to demonstrate that a dynamic simulator, taking into account temporal data of renewable sources and using energy on one year, is able to sizing each element composing the electric generation system and the storage system. The electrical system includes photovoltaic panels (PV), a wind turbine…
Real time supervision for a hybrid renewable power system emulator
ParDhaker AbbesRÉSUMÉ / ABSTRACT : This paper is focused on the design and the implementation of a hybrid PV-wind power system with batteries. It aims to emulate the behavior of a hybrid power system in order to face load consumption variations. Final system includes relevant contributions such as quality of emulator (a large number of parameters are considered); capacity…
Life cycle cost, embodied energy and loss of power supply probability for the optimal design of hybrid power systems
ParDhaker AbbesRÉSUMÉ / ABSTRACT : Stand-alone hybrid renewable energy systems are more reliable than one-energy source systems. However, their design is crucial.For this reason, a new methodology with the aim to design an autonomous hybrid PV-wind-battery system is proposed here. Based on a triple multi-objective optimization (MOP), this methodology combines life cycle cost (LCC), embodied energy…
Multi-criteria fuzzy-logic optimized supervision for hybrid railway power substations
ParDhaker AbbesMulti-criteria fuzzy-logic optimized supervision for hybrid railway power substations Petronela Pankovits, DhakerAbbes, Christophe Saudemont, Stephane Brisse, Julien Pouget,Benoit Robyns, Mathematics and Computers in Simulation, Volume 130, December 2016, Pages 236-250 https://doi.org/10.1016/j.matcom.2016.05.002 RÉSUMÉ / ABSTRACT : Renewable energy sources and storage units’ integration in the railway power substations is an alternative solution to handle the energy consumption, due to railway traffic increase and electricity market liberalization. To…

