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Tire and Road Input Modeling for Low-Frequency Road Noise Prediction

机译:低频道路噪声预测轮胎和道路输入建模

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This paper presents a modeling method for prediction of low-frequency road noise in a steady-state condition where rotating tires are excited by actual road profile undulation input. The proposed finite element (FE) tire model contains not only additional geometric stiffness related to inflation pressure and axle load but also Coriolis force and centrifugal force effects caused by tire rotation for precise road noise simulation. Road inputs act on the nodes of each rib in the contact patch of the stationary tire model and move along them at the driving velocity. The nodes are enforced to displace in frequency domain based on the measured road profile. Tire model accuracy was confirmed by the spindle forces on the rotating chassis drum up to 100Hz where Coriolis force effect should be considered. Full vehicle simulation results showed good agreement with the vibration measurement of front/rear suspension at two driving velocities.
机译:本文介绍了一种在稳态条件下预测低频道路噪声的建模方法,其中通过实际的道路轮廓波动输入激发旋转轮胎。所提出的有限元(Fe)轮胎模型不仅包含与充气压力和轴载有关的额外几何刚度,还包含Coriolis力和由轮胎旋转引起的Coriolis力和离心力效应,以获得精确的道路噪声模拟。道路输入在固定轮胎模型的接触贴片中的每个肋的节点上起作用,并在驱动速度下沿着它们移动。基于测量的道路轮廓强制执行节点以在频域中移位。轮胎模型精度通过旋转底盘鼓上的主轴力确认,高达100Hz,应考虑科里奥利力效应。全车仿真结果表明,两个驱动速度下的前/后悬架的振动测量良好。

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