The paper proposes a methodology to define the architecture of the power unit of a UFC (Ultra Fast Charging) station for electric vehicles (EVs), capable of reaching a power of 350 kW. The main goal is to improve the efficiency of the system defining the best configuration by a MATLAB software (BEA – Best Efficiency Architecture) developed by the authors. The software allows defining the best architecture taking into account efficiency-power curves of all AC/DC and DC/DC power modules currently available on the market, thus increasing energy savings. Architectures based on different connection of AC/DC and DC/DC converters using DC bus have been taken considered. The best configuration found has been simulated using Simulink software, performing time-domain electrical simulations in order to verify and validate the architecture chosen.

Power unit architecture in a high-power charging system for EVs / Lamedica, R.; Ruvio, A.; Falessi, P.; Maccioni, M.; Sammartino, E.; Palumbo, M.. - In: INTERNATIONAL JOURNAL OF ELECTRICAL POWER & ENERGY SYSTEMS. - ISSN 0142-0615. - 149:(2023), pp. 1-11. [10.1016/j.ijepes.2023.109052]

Power unit architecture in a high-power charging system for EVs

Lamedica R.;Ruvio A.;Falessi P.;Maccioni M.;
2023

Abstract

The paper proposes a methodology to define the architecture of the power unit of a UFC (Ultra Fast Charging) station for electric vehicles (EVs), capable of reaching a power of 350 kW. The main goal is to improve the efficiency of the system defining the best configuration by a MATLAB software (BEA – Best Efficiency Architecture) developed by the authors. The software allows defining the best architecture taking into account efficiency-power curves of all AC/DC and DC/DC power modules currently available on the market, thus increasing energy savings. Architectures based on different connection of AC/DC and DC/DC converters using DC bus have been taken considered. The best configuration found has been simulated using Simulink software, performing time-domain electrical simulations in order to verify and validate the architecture chosen.
2023
electric vehicles; ultra fast charging; charging station architecture
01 Pubblicazione su rivista::01a Articolo in rivista
Power unit architecture in a high-power charging system for EVs / Lamedica, R.; Ruvio, A.; Falessi, P.; Maccioni, M.; Sammartino, E.; Palumbo, M.. - In: INTERNATIONAL JOURNAL OF ELECTRICAL POWER & ENERGY SYSTEMS. - ISSN 0142-0615. - 149:(2023), pp. 1-11. [10.1016/j.ijepes.2023.109052]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1674255
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