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- W2801356913 abstract "Abstract The development and commercialization of hybrid electric vehicles (HEVs) and electric vehicles (EVs) are actively being realized due to environmental concerns and rising oil prices. But, EV technology with battery has faced many problems up to now. One of the most important problems is rapidly battery-charging from a clean and reliable source. So, this research proposes a convenient way to charge batteries of EVs and HEVs from a neat power supply. The paper introduces a public off-board battery-charging station fed from on-grid (OG) photovoltaic (PV) array. The proposed 100 kW-contactless charging station is modelled, and simulated. It comprises two main sections: station-side (stationary) section and EV (moving) section. The first section includes PV panels, maximum power point tracking (MPPT)-converter, on-grid 3-level interface inverter, and high-frequency compensated resonant converter. The other section consists of the rectifier, switched mode power converter, and battery-charging controller. An inductive-coupled power (ICP) is transferred from the station to the batteries through an air-core transformer (ACT) with large air-gap. Its primary winding is placed on the station ground and the secondary winding is in the EV. Modelling of the ACTs accomplishes several requirements such as air-gap, have good tolerance to misalignment, light-weight, durable and cost effective as possible. Smart and intelligent controllers are proposed for MPPT, interface on-grid inverter and battery-charging converter. Simulation results are obtained using a Simulink/m-file software package helping in modelling of battery-charging public station." @default.
- W2801356913 created "2018-05-17" @default.
- W2801356913 creator A5037157453 @default.
- W2801356913 date "2018-12-01" @default.
- W2801356913 modified "2023-09-26" @default.
- W2801356913 title "A general software package for modelling a contact-less electric-vehicles battery-charging public-station fed from on-grid photo-voltaic array" @default.
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- W2801356913 doi "https://doi.org/10.1016/j.jesit.2018.04.001" @default.
- W2801356913 hasPublicationYear "2018" @default.
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