6533b832fe1ef96bd129ae05

RESEARCH PRODUCT

Wireless Power Transmission for house appliances: A small-scale resonant coupling prototype

Rosario MiceliAntonino MadoniaMarco TrapaneseMassimo CarusoV. Di DioA. ImburgiaFabio GendusoC. NevolosoV. CecconiCiro SpataroM. StellaPietro RomanoVincenzo CastigliaFilippo PellitteriS. BenantiG. Ricco GalluzzoGiuseppe SchettinoA. O. Di TommasoM. CorporaFabio Viola

subject

Battery (electricity)Resonant inductive couplingEngineeringEnergy Engineering and Power Technology02 engineering and technologySettore ING-IND/32 - Convertitori Macchine E Azionamenti ElettriciInductorbattery chargerHardware_GENERAL0202 electrical engineering electronic engineering information engineeringElectronic engineeringWirelessWireless power transferCouplingPower transmissionRenewable Energy Sustainability and the Environmentbusiness.industry020208 electrical & electronic engineeringElectrical engineering020206 networking & telecommunicationsWireless transmissionSettore ING-IND/31 - ElettrotecnicaComputer Networks and Communicationelectric house applianceHardware and ArchitectureElectromagnetic coilbusinessbattery charger; electric house appliances; Wireless transmission; Computer Networks and Communications; Hardware and Architecture; Energy Engineering and Power Technology; Renewable Energy Sustainability and the Environment

description

This paper presents a low cost prototype of wireless power transfer system based on resonant coupling. The system here proposed can be useful for house appliances battery charging systems: as a matter of fact, it consists mainly of two copper wire coils or windings, placed one in front of the other on the same axis. By exploiting the coils resonance coupling effect, electric energy can be transferred from the inductor coil to the receiver in order to charge the batteries. Low cost experimental tests demonstrated the effectiveness of the proposed wireless power transfer prototype, being it capable to reach an efficiency of about 80% and more along a distance of 30 cm.

https://doi.org/10.23919/aeit.2016.7892812