Review of Torque Cancellation Methods for Integrated Motor Drive and Charger System

Jialou Gao, Boyang Li, Dong Jiang, Min Zhou
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引用次数: 3

Abstract

The power level of on-board charger (OBC) is limited by its cost and space occupation. Although the power density of OBC can be improved by system integration or applying wide bandgap power semiconductor device, the power level is still limited to 22 kW. Using the drivetrain of EV to constitute the AC/DC rectifier stage of OBC can save “half” the space of OBC. Therefore, the OBC will only need isolated DC/DC converter stage so that the power level will be improved a lot. The crux of integrated motor drive and charger system (IMDCS) is how to eliminate the motor torque in charging mode. This paper reviews and compares the existing torque cancellation methods. Furthermore, the essences of those methods are analyzed and classified. Finally, simulations and experiments results are used to verify the point of this paper.
电机驱动与充电集成系统的转矩抵消方法综述
车载充电器(OBC)的功率水平受其成本和占用空间的限制。虽然可以通过系统集成或应用宽禁带功率半导体器件来提高OBC的功率密度,但功率水平仍然限制在22kw。利用电动汽车动力传动系统构成OBC的交直流整流级,可以节省OBC“一半”的空间。因此,OBC只需要隔离的DC/DC转换器级,这样功率水平就会得到很大的提高。电机驱动与充电集成系统(IMDCS)的关键是如何消除充电模式下的电机转矩。本文对现有的扭矩抵消方法进行了综述和比较。并对这些方法的本质进行了分析和分类。最后,用仿真和实验结果验证了本文的观点。
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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