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High-Bandwidth Suspension Resonance Analysis of In-Wheel Motor Vehicle Using Multibody Dynamics

机译:使用多体动力学的轮式机动车辆高带宽悬架共振分析

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Vibration suppression control of vehicles is important for ride comfort. In vehicles electrification, the in-wheel motor as an actuator for vibration suppression has attracted attention as an alternative to active suspension systems. For controller design, it is necessary to figure out the characteristics of the system. However, the frequency response characteristics of the suspension with the in-wheel motor are not fully understood. A conventional and traditional quarter car model gives an expression of only two resonances of the suspension system. This paper reveals that the third resonance comes from the suspension bushing using multibody dynamics. The authors also perform a sensitivity analysis of the frequency responses for a set of bushing stiffnesses that may differ with the product lifetime. Lastly, the authors show a feedforward controller design example based on the model analysis.
机译:车辆的振动抑制控制对于乘坐舒适性很重要。在车辆电气化中,作为用于振动抑制的致动器的轮内电动机引起了主动悬架系统的替代方案。对于控制器设计,有必要弄清楚系统的特性。然而,悬架的频率响应特性与车轮电机不完全理解。传统和传统的四分之一车型,表达了悬架系统的两个共振。本文揭示了第三谐振来自使用多体动力学的悬架衬套。作者还对可能与产品寿命不同的一组衬套刚度进行频率响应的灵敏度分析。最后,作者展示了一种基于模型分析的前馈控制器设计示例。

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