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Auteur Guillaume Van den Hove d'Ertsenryck |
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Titre : Design of a microgrid system : sizing of the components Type de document : Travail de fin d'études Auteurs : Guillaume Van den Hove d'Ertsenryck, Auteur ; Gaëtan Sonck, ; Jean-Michel Rousseau, Editeur : ECAM Année de publication : 2019 Note générale : SONCK CONSULT Langues : Anglais (eng) Index. décimale : TFE - Electromécanique Résumé : Microgrids have been shown very useful and cost-effective, especially thanks to the recent technologies. The objective of this thesis is to develop a design methodology for a battery source-based microgrid system for residential and industrial purposes. In the first instance, the usefulness of microgrids and the different interests are explained. Subsequently, the thesis is divided into two part : The design strategy for the components will be described in this part and the power management will be described in the complementary thesis written by Mr. Mathieu Bordet. The design methodology is based on the use of a voltage source inverter, a passive filter and a transformer, by taking into consideration different design constraints as limited voltage drop and losses while preserving a certain quality of the power signal. First an analytical model in the frequency domain has been obtained using some simplifying assumptions, then the founded parameters have been tested and approved in a simulation using Matlab. Finally, the theory has been put into practice by realizing a 16kVA microgrid system with a 27kWh battery module, photovoltaic panels and a generator, requested by the company Sonck Consult for commercializing purposes. Different stress tests and constraints in relation to this example are also described in this last chapter. Design of a microgrid system : sizing of the components [Travail de fin d'études] / Guillaume Van den Hove d'Ertsenryck, Auteur ; Gaëtan Sonck, ; Jean-Michel Rousseau, . - ECAM, 2019.
SONCK CONSULT
Langues : Anglais (eng)
Index. décimale : TFE - Electromécanique Résumé : Microgrids have been shown very useful and cost-effective, especially thanks to the recent technologies. The objective of this thesis is to develop a design methodology for a battery source-based microgrid system for residential and industrial purposes. In the first instance, the usefulness of microgrids and the different interests are explained. Subsequently, the thesis is divided into two part : The design strategy for the components will be described in this part and the power management will be described in the complementary thesis written by Mr. Mathieu Bordet. The design methodology is based on the use of a voltage source inverter, a passive filter and a transformer, by taking into consideration different design constraints as limited voltage drop and losses while preserving a certain quality of the power signal. First an analytical model in the frequency domain has been obtained using some simplifying assumptions, then the founded parameters have been tested and approved in a simulation using Matlab. Finally, the theory has been put into practice by realizing a 16kVA microgrid system with a 27kWh battery module, photovoltaic panels and a generator, requested by the company Sonck Consult for commercializing purposes. Different stress tests and constraints in relation to this example are also described in this last chapter. Exemplaires
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