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

Kelly Fernandez, Rahul K. Iyer, Ting Ge, Jiarui Zou, Derek Chou, Zitao Liao, V. Agarwal, T. Gebrael, N. Miljkovic, R. Pilawa-Podgurski
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引用次数: 2

Abstract

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.
一种基于液冷氮化镓的交流/直流飞电容多级变换器,集成了启动和增材制造的冷板
二级电动汽车(EV)车载充电器提供交流-直流转换能力,以便为车载高压(HV)电池充电。双向电动汽车充电器可以允许电动汽车也作为车辆到电网服务的交流电源。在充电和逆变器应用中,充电器都希望具有高功率密度,高功率处理能力和低重量。本文展示了一种优化的双向电动汽车充电系统的结构和控制,该系统可以从低线(120v AC)和高线(240v AC)交流电压转换为400v直流输出。讨论了整个系统的运行和控制、热管理、增强功率级设计和启动程序。给出了直流-交流大功率运行和系统启动的实验结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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