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A Modular Designed Three-phase ~98-Efficiency 5kW/L On-board Fast Charger for Electric Vehicles Using Paralleled E-mode GaN HEMTs

机译:模块化设计的三相〜98% - 使用并联电子模式GaN Hemts的电动汽车车载快速充电器5kW / L车载快速充电器

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Most of the present electric vehicle (EV) on-board chargers utilize a conventional design, i.e., a boost-type Power Factor Correction (PFC) controller followed by an isolated DC/DC converter. Such design usually yields a ~94% wall-to-battery efficiency and 2 ~3kW/L power density at most, which makes a high-power charger, e.g., 20kW module difficult to fit in the vehicle. As described in this paper, first, an E-mode GaN HEMT based 7.2kW single-phase charger was built. Connecting three such modules to the three-phase grid allows a three-phase >20kW charger to be built, which compared to the conventional three-phase charger, saves the bulky DC-bus capacitor by using the indirect matrix converter topology. To push the efficiency and power density to the limit, comprehensive optimization is processed to optimize the single-phase module through incorporating the GaN HEMT switching performance and securing its zero-voltage switching. Close-loop control is implemented to minimize the output current ripple and balance the power among three single-phase modules. Simulation and experimental results validated that the proposed charger has an efficiency of ~98%, and a power density of ~5kW/L@20kW.
机译:当前电动车(EV)车载充电器使用传统的设计,即升压式功率因数校正(PFC)控制器,然后是隔离的DC / DC转换器。这种设计通常最多产生〜94%的壁电池效率和2〜3kW / L功率密度,这使得高功率充电器,例如,难以适合车辆的20kW模块。如本文所述,首先,构建了基于E模式GaN HEMT的7.2kW单相充电器。将三个这样的模块连接到三相网格允许构建三相> 20kW充电器,与传统的三相充电器相比,通过使用间接矩阵转换器拓扑来节省庞大的直流电容器。为了将效率和功率密度推动到极限,处理综合优化,通过结合GaN HEMT开关性能并确保其零电压切换来优化单相模块。实现闭环控制以最小化输出电流纹波,并在三个单相模块之间平衡电源。仿真和实验结果验证了所提出的充电器的效率〜98%,电力密度为〜5kw / l @ 20kw。

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