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首页> 外文期刊>Journal of Advanced Mechanical Design, Systems, and Manufacturing >Approaches to diminish large unsprung mass negative effects of wheel side drive electric vehicles
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Approaches to diminish large unsprung mass negative effects of wheel side drive electric vehicles

机译:减少轮侧驱动电动汽车的大型未悬挂质量负面影响的方法

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摘要

Ride comfort and road holding ability of distributed drive electric vehicles are worsened due to large unsprung mass introduced by wheel side drive system. To diminish this large unsprung mass negative effects, three approaches (“Suspension and Reducer Integrated” Close-to-Wheel Drive System, “Dynamic Vibration Absorber” Close-to-Wheel Drive System and in-wheel drive system with “Active and Energy Regenerative Suspension”) are introduced. The corresponding dynamics are analyzed and the schemes are provided. Evaluations of suspension performance show the superiorities of these approaches in different magnitude compared with the conventional configuration which is equipped with hub motor and passive suspension. Overall comparisons between three approaches are carried out and the feasibilities are discussed. With proper design according to specific application, these approaches are promising to be applied on various wheel side drive systems.
机译:由于轮侧驱动系统引入了较大的未悬挂质量,因此使分布式驱动电动汽车的乘坐舒适性和抓地力降低。为了减少这种巨大的弹簧阻力,可以采用三种方法(“悬架和减速器集成”近轮驱动系统,“动态减振器”近轮驱动系统以及带有“主动和能量再生”的轮内驱动系统)暂停”)。分析了相应的动力学并提供了方案。对悬架性能的评估表明,与配备轮毂电机和被动悬架的常规配置相比,这些方法在不同程度上具有优势。对三种方法进行了整体比较,并讨论了可行性。通过根据特定应用进行适当的设计,这些方法有望应用于各种车轮侧驱动系统。

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