A Bidirectional Liquid-Cooled GaN-based AC/DC Flying Capacitor Multi-Level Converter with Integrated Startup and Additively Manufactured Cold-Plate for Electric Vehicle Charging

2022 IEEE Applied Power Electronics Conference and Exposition (APEC)(2022)

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摘要
Level II electric vehicle (EV) on-board chargers provide AC-DC conversion capability in order to charge on-board high-voltage (HV) batteries. Bidirectional EV chargers can allow the EV to also act as an AC source in vehicle-to-grid services. In both charging and inverter applications, it is desirable for chargers to have high power density, high power-handling capability, and low weight. This paper showcases the architecture and control of an optimized bidirectional EV charger system that can convert from both low-line (120 V AC) and high-line (240 V AC) AC voltages to a 400 V DC output. The operation and control of the complete system, thermal management, enhanced power stage design, and start-up procedure are discussed. Experimental results demonstrating DC-AC high power operation and system start-up are reported.
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inverter applications,high power density,high power-handling capability,optimized bidirectional EV charger system,bidirectional liquid-cooled GaN,integrated startup,additively manufactured cold-plate,on-board chargers,AC-DC conversion capability,AC source,vehicle-to-grid services,AC-DC flying capacitor multilevel converter,electric vehicle charging,on-board high-voltage batteries,thermal management,voltage 120.0 V,voltage 240.0 V,voltage 400.0 V,GaN
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