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Evaluation of vehicle-based tyre testing methods

机译:基于车辆的轮胎测试方法评估

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The demand for reduced development time and cost for passenger cars increases the strive to replace physical testing with simulations. This leads to requirements on the accuracy of the simulation models used in the development process. The tyres, the only components transferring forces from the road to the vehicle, are a challenge from a modelling and parameterization perspective. Tests are typically performed on flat belt tyre testing machines. Flat belt machines offers repeatable and reliable measurements. However, differences between the real world road surface and the flat belt can be expected. Hence, when using a tyre model based on flat belt measurements in full vehicle simulations, differences between the simulations and real prototype testing can be expected as well. Vehicle-based tyre testing can complement flat belt measurements by allowing reparameterization of tyre models to a new road surface. This paper describes an experimental vehicle-based tyre testing approach that aims to parameterize force and moment tyre models compatible with the standard tyre interface. Full-vehicle tests are performed, and the results are compared to measurements from a mobile tyre testing rig on the same surface and to measurements on a flat belt machine. The results show that it is feasible to measure the inputs and outputs to the standard tyre interface on a flat road surface with the used experimental setup. The flat belt surface and the surface on the test track show similar characteristics. The maximum lateral force is sensitive to the chosen manoeuvres, likely due to temperature differences and to vibrations at large slip angles. For tyre models that do not model these effects, it is vital to test the tyres in a manoeuvre that creates comparable conditions for the tyres as the manoeuvre in which the tyre model will be used.
机译:对乘用车开发时间和成本的需求增加了努力替代模拟的物理测试。这导致对开发过程中使用的模拟模型的准确性的要求。轮胎,唯一从路上转移到车辆的部件,是建模和参数化视角的挑战。通常对平皮带轮胎试验机进行测试。平皮带机提供可重复可靠的测量。然而,可以预期现实世界路面和平带之间的差异。因此,当使用基于完全车辆模拟的平带测量的轮胎模型时,可以预期模拟和实际原型测试之间的差异。基于车辆的轮胎测试可以通过允许轮胎模型的Reparameteriz化到新的道路表面来补充平带测量。本文介绍了一种基于实验车辆的轮胎测试方法,旨在参数化与标准轮胎界面兼容的力和矩轮胎模型。进行全车辆测试,并将结果与​​来自同一表面上的移动轮胎测试装置的测量进行比较,并在平带机上测量。结果表明,通过使用的实验设置测量输入和输出到平面路面上的标准轮胎界面是可行的。平皮带表面和测试轨道上的表面显示出类似的特点。最大横向力对所选择的动作敏感,可能由于温度差异和大滑动角度的振动而敏感。对于不绘制这些效果的轮胎模型,在机动中测试轮胎是至关重要的,这为轮胎为轮胎的可比条件创造了用于轮胎模型的机动。

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