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A Compact 50-kW Traction Inverter Design Using Off-the-Shelf Components

机译:采用现成组件的紧凑型50 kW牵引逆变器设计

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The requirements on volumetric density of power electronic converters in electric vehicles are increasing, since more space is needed for electronic systems and passenger capacity. The U.S. Department of Energy (DOE) has set the 2020 target for vehicular power electronic systems as 13.4 kW/l. Achieving high power density using commercial off-the-shelf (COTS) parts is challenging because these components have various form factors leading to unused spaces, as well as cooling and airflow issues. In this work, a high-power-density traction inverter, rated at 50-kW with the peak power at 74-kW, is designed and built using all COTS components. The system is tested under resistive-inductive loads and a dynamometer-based driving schedule. A power density of 13.64 kW/l was accomplished and possibilities for volume reduction to achieve 25 kW/l are evaluated revealing the challenges to achieve even higher power densities using COTS technologies.
机译:电动汽车中的电力电子转换器的体积密度要求越来越高,因为电子系统和载客量需要更多的空间。美国能源部(DOE)已将2020年车载电力电子系统的目标设定为13.4 kW / l。使用商用现货(COTS)部件实现高功率密度具有挑战性,因为这些部件具有各种形状因数,从而导致未使用的空间以及冷却和气流问题。在这项工作中,使用所有COTS组件设计和制造了一个额定功率为50 kW,峰值功率为74 kW的高功率密度牵引逆变器。该系统在电阻感应负载和基于测力计的行驶时间表下进行了测试。实现了13.64 kW / l的功率密度,评估了将体积减小到25 kW / l的可能性,这揭示了使用COTS技术实现更高功率密度的挑战。

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