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Study on the ride comfort of vehicles driven by in-wheel motors:

机译:研究轮毂电机驱动车辆的行驶舒适性:

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Vehicles driven by in-wheel motors have received more and more attention. However, due to the introduction of in-wheel motors, the ratio between unsprung and sprung mass is increased. In this article, to study the influence of this change on ride comfort of vehicles driven by in-wheel motors, an 11 degrees of freedom of vehicle ride comfort model will be presented and studied with MATLAB/Simulink. Then, road tests will be conducted to corroborate the simulation results. It can be obtained that the vehicle ride comfort becomes poor with the increasing unsprung mass. Finally, semi-active air-suspension proportional–integral–derivative control system will be proposed to improve the vehicle ride comfort. Through the simulation results, one can come to a conclusion that the proportional–integral–derivative control system for air suspension is feasible and effective to improve the ride comfort of the vehicles driven by in-wheel motors.
机译:由轮内电动机驱动的车辆受到越来越多的关注。但是,由于引入了轮毂电机,因此簧下质量和簧下质量之间的比率增加了。在本文中,为了研究这种变化对轮毂电机驱动的车辆行驶舒适性的影响,将提出11自由度的车辆行驶舒适性模型,并使用MATLAB / Simulink进行研究。然后,将进行路测以证实模拟结果。可以得到,随着簧下质量的增加,车辆的乘坐舒适性变差。最后,将提出半主动空气悬架比例-积分-微分控制系统,以提高车辆的乘坐舒适性。通过仿真结果,可以得出结论,用于空气悬架的比例-积分-微分控制系统对于提高轮毂电机驱动车辆的行驶舒适性是可行且有效的。

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