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Sensitivity analysis of three-wheel vehicle's suspension parameters influencing ride behavior

机译:三轮车辆悬架参数影响乘坐行为的敏感性分析

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In this article coupled vertical-lateral 9 degree-of-freedom model of a three-wheel vehicle formulated using Lagrangian dynamics is presented in order to determine its vertical and lateral ride. The model is justified by correlating the power spectral density vertical and lateral acceleration results determined from analysis with the same obtained from experimental measurements. The ride comfort of the vehicle is evaluated on the basis of ISO 2631-I criteria. The sensitivity of vehicle suspension parameters on vertical and lateral ride behavior is analyzed, and it is noticed that rear-suspension damping coefficient, front-tire stiffness, rear-tire stiffness, front-tire damping coefficient, and rear-tire damping coefficient are critical parameters for vertical power spectral density acceleration. Rear-suspension stiffness, rear-suspension damping coefficient, front-tire stiffness, and rear-tire stiffness are critical parameters for lateral power spectral density acceleration.
机译:在本文中,提出了使用拉格朗日动态配制的三轮车辆的垂直横向9自由度模型,以确定其垂直和横向骑行。 通过将从实验测量结果的分析确定的功率谱密度垂直和横向加速度结果相关,该模型是合理的。 在ISO 2631-I标准的基础上评估车辆的乘坐舒适性。 分析了车辆悬架参数对垂直和横向骑行行为的敏感性,并注意到后悬架阻尼系数,前轮胎刚度,后轮胎刚度,前轮胎阻尼系数和后轮胎阻尼系数是至关重要的 垂直功率谱密度加速度的参数。 后悬架刚度,后悬架阻尼系数,前轮胎刚度和后轮胎刚度是横向功率谱密度加速度的关键参数。

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