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Design of Electronic Differential System for an Electric Vehicle with in-wheel motor

机译:轮毂电动机的电动汽车电子差动系统设计

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This paper presents design of Electronic Differential System (EDS) for an Electric Vehicle (EV) with in-wheel motor. EDS is generally used in EVs due to some drawbacks of mechanical differential such as being heavy systems and mechanical losses caused by the powertrains. According to the turning angle of the wheel, task of EDS for front wheels is to adjust rpm of the wheels. On the contrary for rear wheels, only rpm control is realized due to not steering. Hence, there are less studies on EDS for front wheels of EV in the literature. In this study, an EDS for front wheels of EV is designed. According to steering angle and speed of EV, the speeds of the front wheels are estimated by equations derived from Ackermann-Jeantand model using Codesys Software Package. The estimated speeds are sent to Induction Motor (IM) Drives via Controller Area Network-Bus (CAN-Bus). EDS is also simulated by Matlab/Simulink. Then, the speeds of the front wheels are experimentally measured by a tachometer. Codesys results are verified by both Simulink and experimental results. It is observed that the designed EDS is convenient for EVs with in-wheel motor.
机译:本文介绍了带轮毂电动机的电动汽车(EV)的电子差动系统(EDS)的设计。由于机械差速器的一些缺点,例如笨重的系统和动力总成造成的机械损耗,EDS通常用于电动汽车。根据车轮的旋转角度,前轮EDS的任务是调整车轮的rpm。相反,对于后轮,由于没有转向,因此只能实现rpm控制。因此,文献中对电动汽车前轮的EDS的研究较少。在这项研究中,设计了用于电动汽车前轮的EDS。根据转向角和EV的速度,通过使用Codesys软件包从Ackermann-Jeantand模型得出的方程式估算前轮的速度。估计的速度通过控制器区域网络总线(CAN-Bus)发送到感应电动机(IM)驱动器。 Matlab / Simulink也对EDS进行了仿真。然后,通过转速计通过实验测量前轮的速度。 Simsys和实验结果均验证了Codesys的结果。可以看出,设计的EDS对于带轮毂电机的电动汽车很方便。

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