This paper presents a high-performance dynamic Wireless Power Transfer (WPT) system for electric vehicles, which has high efficiency and the potential for large scale deployment. The detailed single stage 22kW DC/AC converter design of the transmitter side is presented. The converter is connected to a series-series WPT compensated system and has features like hybrid switches with fast 0-Ω gate-drive circuit for the SiC MOSFET and resonant gate-drive circuit for the IGBT, which allows operation without ZVS switching. Experimental results are presented to confirm the correct operation of the converter.

A Dynamic Wireless Charging System for Electric Vehicles Based on DC/AC Converters with SiC MOSFET-IGBT Switches and Resonant Gate-Drive / Rosu, STEFAN GEORGE; Khalilian, Mojtaba; Cirimele, Vincenzo; Guglielmi, Paolo. - ELETTRONICO. - (2016). (Intervento presentato al convegno The 42nd Annual Conference of IEEE Industrial Electronics Society tenutosi a Florence nel October 24-27, 2016).

A Dynamic Wireless Charging System for Electric Vehicles Based on DC/AC Converters with SiC MOSFET-IGBT Switches and Resonant Gate-Drive

ROSU, STEFAN GEORGE;KHALILIAN, MOJTABA;CIRIMELE, VINCENZO;GUGLIELMI, PAOLO
2016

Abstract

This paper presents a high-performance dynamic Wireless Power Transfer (WPT) system for electric vehicles, which has high efficiency and the potential for large scale deployment. The detailed single stage 22kW DC/AC converter design of the transmitter side is presented. The converter is connected to a series-series WPT compensated system and has features like hybrid switches with fast 0-Ω gate-drive circuit for the SiC MOSFET and resonant gate-drive circuit for the IGBT, which allows operation without ZVS switching. Experimental results are presented to confirm the correct operation of the converter.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11583/2656689
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