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A study on the improvement of the tire force distribution method for rear wheel drive electric vehicle with in-wheel motor

机译:车轮式电动机后轮驱动电动车辆轮胎力分配方法改进研究

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This paper propose the tire force distribution method for a rear wheel drive electric vehicle. This method is developed to improve the vehicle stability under the high speed cornering condition and save the electric energy. To control the lateral vehicle motion, the desired yaw moment is calculated by yaw rate control using PID theory. And Total desired longitudinal force is also determined by acceleration pedal signal. The tire force distribution method calculates the desired longitudinal tire forces at left and right wheel using the desired yaw moment and total desired longitudinal force and Maximum longitudinal tire force. And Maximum longitudinal tire force is determined by tire friction circle theory. The proposed method is verified by the simulation using CarSim software. And it is found from simulation results that the proposed method provides improvement vehicle stability and saving the electric energy under the high speed cornering condition.
机译:本文提出了后轮驱动电动车辆的轮胎力分配方法。开发了该方法以提高高速转向条件下的车辆稳定性,并节省电能。为了控制横向车辆运动,使用PID理论通过横摆率控制计算所需的横摆力矩。并且还通过加速踏板信号确定总期望的纵向力。轮胎力分配方法使用所需的横摆力矩和总期望的纵向力和最大纵向轮胎力来计算左轮和右轮处的所需纵向轮胎力。通过轮胎摩擦圈理论确定最大的纵向轮胎力。通过使用Carsim软件的模拟来验证所提出的方法。并且可以从仿真结果中发现,所提出的方法提供改进的车辆稳定性并在高速转向条件下节省电能。

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