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Design, optimization and development of electric machine for traction application in GM battery electric vehicle

机译:通用电池电动汽车牵引用电机的设计,优化与开发

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This paper presents the design optimization, development and performance details of the Chevrolet Spark battery electric vehicle (BEV) traction electric machine. The propulsion system has one electric machine inside an oild cooled drive unit operating as a motor or generator depending on the drive cycle demand. The machine is permanent magnet AC synchronous machine type with the magnets buried inside the rotor. Details of the motor design, such as; winding selection, efficiency optimization for given drive cycles and rotor geometry optimization are discussed. Absence of an engine and sound it brings to a conventional vehicle can underscore any noise from the drive unit in the battery electric vehicles. Hence, particular attention is given to the NVH performance and torque ripple optimization in this machine. A novel approach to torque ripple minimization, by shaping the rotor surface is presented and its contribution to the NVH characteristics of the motor are discussed in detail. Finally, measurement results of machine efficiency, thermal and NVH performance are presented in the context of the vehicle performance.
机译:本文介绍了雪佛兰星火电池电动汽车(BEV)牵引电机的设计优化,开发和性能细节。推进系统在一个油冷却的驱动单元内部有一个电机,该驱动单元根据驱动周期需求而作为电动机或发电机运行。该电机是永磁交流同步电机类型,其磁铁埋在转子内部。电机设计细节,例如;讨论了绕组的选择,给定驱动周期的效率优化和转子几何形状的优化。常规车辆缺少引擎和声音会突出电池电动车辆驱动单元产生的任何噪音。因此,要特别注意该机器中的NVH性能和扭矩波动优化。提出了一种通过对转子表面进行整形来最小化转矩脉动的新颖方法,并详细讨论了其对电机NVH特性的贡献。最后,结合车辆性能介绍了机器效率,热性能和NVH性能的测量结果。

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