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Evaluation of Influence of Motorized Wheels on Contact Force and Comfort for Electric Vehicle

机译:电动车轮对电动汽车接触力和舒适性的评价

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—Volatile oil prices and increased environmental sensitivity together with political concerns have moved the attention of governments, automobile manufacturers and customers to alternative power trains. From the actual point of view the most promising concepts for future passenger cars are based on the conversion of electrical into mechanical energy. In-wheel motors are an interesting concept towards vehicle electrification that provides also high potentials to improve vehicle dynamics and handling. Nevertheless in-wheel motors increase the unsprung mass worsening vehicle comfort and safety. All kinds of motorized-wheel structures are analyzed. For the unitary motorized wheel, since increasing the unsprung mass of vehicle, it adds adverse effects on the vehicle road holding performance and vehicle comfortableness. To decrease the adverse effect for unsprung mass increasing, a method by attaching the motor in the wheel through springs and dampers of exclusive use is brought out. It is verified that the vibration of EV with suspended-motor motorized-wheel is better than the EV with detached-motorized wheel. For high cost of suspended in-wheel motor, The effect of increasing of unsprung mass by using integral motor is analyzed by simulation with whole vehicle model. The more unsprung mass of integral motor deteriorates the vehicle comfort and vibration performance at low excitation frequency of road. But it is improved by using integral motor at higher excitation frequency of road, while unsprung mass is increased by using integral motor. The fluctuation amplitude of vibration at high frequency is much more big than at low frequency. In this view, the conclusion that in-wheel motor integrated into wheels is acceptable structural concept for electric vehicle with motorized wheels with lower cost than suspended in-wheel motor is achieved
机译:- 与政治问题的挥发油价和环境敏感度的增加使各国政府,汽车制造商和客户的注意力引起了替代动力列车。从实际的角度来看,未来乘用车最有希望的概念基于电力转化为机械能。轮式电机是朝向车辆电气化的有趣概念,提供了改善车辆动力学和处理的高潜力。然而,轮式电机增加了难以置信的舒适性和安全性。分析各种电动轮结构。对于整体机动车轮,由于增加了难以置的载体的载体,它会对车辆道路保持性能和车辆舒适性增加不利影响。为了减少对Unsrung质量增加的不利影响,通过弹簧将电动机连接到车轮中的方法和独家使用的阻尼器。验证了具有悬挂电动机的EV的振动优于带有独立式电动轮的EV更好。对于悬浮式轮廓电机的高成本,通过使用全车型模拟分析了通过使用整体电动机增加了Unsprung Mass的效果。更加难以置的整体电机质量越来越大,在低励磁频率下,道路的速度和振动性能劣化。但是通过在较高的励磁频率下使用整体电动机来改进,而使用整体电动机增加了Unsprung质量。高频振动的波动幅度比低频更大。在这种观景中,结论是,内轮电动机集成到车轮中是可接受的,用于电动车辆的结构概念,电动车辆具有比悬浮的轮廓电量更低的成本实现

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