This paper deals with evaluations on a power architecture for the integration of renewable energy generation systems with the sustainable mobility in a smart grid scenario. Starting from a real case study, represented by a laboratory prototype of a DC micro-grid, analytical considerations are carried out by means of functional models of the main components of the microgrid. The proposed modeling allows the identification and optimization of an energy management strategy, which is specifically evaluated in this paper to reduce electric power supplied by the main grid. The simulation results highlight the good performance and the stability of the proposed strategy during different operative conditions of the micro-grid.
A case study of a DC-microgrid for the smart integration of renewable sources with the urban electric mobility / Marino, P; Rubino, G; Rubino, L; Capasso, C; Veneri, O. - (2018), pp. 544-549. (Intervento presentato al convegno International Symposium on Power Electronics, Electrical Drives, Automation and Motion (SPEEDAM) tenutosi a Amalfi) [10.1109/SPEEDAM.2018.8445228].
A case study of a DC-microgrid for the smart integration of renewable sources with the urban electric mobility
Rubino G;
2018
Abstract
This paper deals with evaluations on a power architecture for the integration of renewable energy generation systems with the sustainable mobility in a smart grid scenario. Starting from a real case study, represented by a laboratory prototype of a DC micro-grid, analytical considerations are carried out by means of functional models of the main components of the microgrid. The proposed modeling allows the identification and optimization of an energy management strategy, which is specifically evaluated in this paper to reduce electric power supplied by the main grid. The simulation results highlight the good performance and the stability of the proposed strategy during different operative conditions of the micro-grid.File | Dimensione | Formato | |
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