Speed and traction control in electric vehicles with induction motors

R. Marino, S. Scalzi, C. Verrelli
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引用次数: 4

Abstract

An observer-based indirect field oriented control scheme is proposed for the speed and traction control of electric vehicles powered by induction motors with uncertain constant load torque and stator and rotor resistances. The novel control architecture transforms the vehicle speed reference into a suitable motor speed reference and then guarantees the motor speed regulation to the corresponding reference on the basis of the motor speed regulation error. The motor speed measurement, which is typically available in electric vehicles, is used not only for traction control but for regulation purposes as well. The closed loop on-line identification of the three critical uncertain parameters allows for on-line estimating and imposing the motor flux modulus reference value which minimizes power losses and improves power efficiency.
感应电机电动汽车的速度和牵引力控制
针对具有不确定恒载转矩和定子、转子电阻的异步电动机驱动的电动汽车,提出了一种基于观测器的间接磁场定向控制方案。该控制结构将车辆转速基准转换为合适的电机转速基准,然后根据电机调速误差保证电机调速到相应的基准。电机速度测量,这是典型的电动汽车,不仅用于牵引力控制,也用于调节目的。三个关键不确定参数的闭环在线辨识可以在线估计和施加电机磁通模数参考值,从而最大限度地减少功率损耗,提高功率效率。
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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