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Comprehensive Efficiency Modeling of Electric Traction Motor Drives for Hybrid Electric Vehicle Propulsion Applications

机译:混合动力电动汽车推进应用中电动牵引电动机驱动器的综合效率建模

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摘要

Extensive research done in the recent past has proven that power electronic converters and electric propulsion motors are extremely critical components for modern hybrid electric vehicle (HEV) propulsion applications. Therefore, it is essential that both the traction motor and the associated drive operate at their optimal efficiencies throughout the driving schedule. In typical HEV propulsion applications, the traction motor and the drive are used over the entire torque/speed operational range. In view of this fact, this paper aims at modeling the inverter and motor losses/efficiencies over typical city and highway driving schedules. The noteworthy losses within a typical three-phase dc/ac traction inverter, such as the switching and conduction losses for both the insulated-gate bipolar transistors and the antiparallel diodes, are modeled and simulated over the city and highway driving patterns. An induction motor (IM) is used for a medium-sized sport utility vehicle, which was modeled in the ADvanced VehIcle SimulatOR (ADVISOR) software. The significant IM losses that were considered in the study include the stator copper losses, rotor copper losses, and core losses. Thus, the average efficiencies of both the inverter drive and the induction traction motor are evaluated and summarized under city as well as highway driving conditions. Finally, based on the individual-model-based efficiency analysis, the overall traction motor drive system efficiency is estimated.
机译:最近的大量研究证明,电力电子转换器和电动推进马达是现代混合动力电动汽车(HEV)推进应用中极为关键的组件。因此,至关重要的是,在整个行驶计划中,牵引电机和相关的驱动器均应以其最佳效率运行。在典型的HEV推进应用中,牵引电机和驱动器在整个扭矩/速度运行范围内使用。有鉴于此,本文旨在对典型的城市和高速公路行驶时间表中的逆变器和电机损耗/效率进行建模。典型的三相dc / ac牵引式逆变器中值得注意的损耗,例如绝缘栅双极型晶体管和反并联二极管的开关损耗和传导损耗,都是在城市和公路行驶模式下进行建模和仿真的。感应电动机(IM)用于中型运动型多功能车,该模型已在高级车辆仿真器(ADVISOR)软件中建模。研究中考虑的重要IM损耗包括定子铜损耗,转子铜损耗和铁芯损耗。因此,在城市以及高速公路行驶条件下,变频器驱动和感应牵引电机的平均效率都得到了评估和总结。最后,基于基于个体模型的效率分析,可以估算出牵引电机驱动系统的整体效率。

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