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Investigation of vibration and ride characteristics of a five degrees of freedom vehicle suspension system

机译:五程度自由式车辆悬架系统的振动和骑行特性研究

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Ride comfort of the passengers in a vehicle largely depends on the vibration isolation performance of its suspension system. This paper aims at vibration isolation analysis of both heavy-duty and light-duty vehicle suspension systems to corroborate ride comfort perception. A half car model with passive suspension and having five degrees of freedom has been used to investigate the dynamic response i.e. the vibration with eccentricity under sinusoidal input excitations of a rough road. The mass of the vehicle body, front/rear wheels and driver/passenger;; mass moment of inertia of the vehicle body;; damping coefficients and spring stiffness of front/rear suspensions;; distances of the driver/passenger's seat (eccentricity) and front/rear suspension locations from the centre of gravity (CG) of the vehicle body;; pitch angle-all these are considered as variable parameters. A model is created in SIMULINK of MATLAB for simulation of the vehicle's random response and ride comfort characteristics.
机译:乘坐车辆中的乘客的舒适性主要取决于其悬架系统的振动隔离性能。本文旨在对重型和轻型车辆悬架系统的振动隔离分析,以证实乘坐舒适感。已经使用具有被动悬架和具有五个自由度的半汽车模型来研究动态响应,即在粗糙道路的正弦输入激发下的偏心振动。车身,前轮/后轮和驾驶员/乘客的质量;车身惯性矩;防衰减系数和前悬架的弹簧刚度;驾驶员/乘客座椅(偏心率)的距离和车身重心(CG)中心的前/后悬架位置;俯仰角 - 所有这些都被视为可变参数。在MATLAB的SIMULINK中创建模型,用于模拟车辆的随机响应和乘坐舒适特性。

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