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Active Suspension System to Improve Ride Comfort Performance of Electric Vehicle (EV) Conversion

机译:有源悬架系统,提高电动汽车(EV)转换的乘坐舒适性能

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This paper presents an evaluation of ride comfort performance of a passenger vehicle when converted into an electric vehicle (EV). The evaluations were done using a validated 7degrees of freedom of vehicle's ride model. The developed vehicle's ride model was used to predict the vehicle's ride behaviours when subjected to random road profiles. The ride model of EV conversion was then integrated with the active suspension system in order to further improve the EV conversion's ride comfort performance. It was found that the modifications of a normal passenger vehicle into an EV conversion do not affect vehicle's ride comfort performance significantly, except the conversion changes only the magnitude of vehicle's vertical displacement, pitch rate and pitch angle responses. However, the integration of an active suspension system in EV conversions ride model was improves the observed responses of EV conversion's ride comfort performance by overall improvement of 65.7 percents.
机译:本文在转换为电动车辆(EV)时,对乘用车的乘坐舒适性能进行评估。评估是使用验证的车辆乘坐模型自由度进行的。发达的车辆的骑行模型用于预测当受到随机公路型材时的车辆的骑行行为。 EV转换的乘坐模型随机与主动悬架系统集成,以进一步提高EV转换的乘坐舒适性能。结果发现,正常乘用车进入EV转换的修改不会影响车辆的乘坐舒适性能,除了转换改变车辆的垂直位移,俯仰率和俯仰角响应的幅度。然而,在EV转换中的主动悬架系统的集成乘坐模型提高了通过65.7百分比的总体改进来改善了EV转换速度舒适性能的观察到的响应。

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