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Design and testing of an innovative measurement device for tyre-road contact forces

机译:轮胎接触力创新测量装置的设计和测试

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The measurement of tyre-road contact forces is the first step towards the development of new control systems for improving vehicle safety and performances. Tyre-road contact forces measurement systems are very expensive and significantly modify the unsprung masses of the vehicle as well as the rotational inertia of the tyres. Thus, vehicle dynamics results are significantly affected. As a consequence, the measured contact forces do not correspond to the contact forces under real working conditions. A new low-cost tyre-road contact forces measurement system is proposed in this paper that can be applied to passenger cars. Its working principle is based on the measurement of three deformations of the wheel rim through strain gauges. The tyre-rim assembly is thus turned into a sensor for tyre-road contact forces. The influence of the strain gauges position onto the measurement results has been assessed through finite element simulations and experimental tests. It has been proven that, for a large variety of rims, the strain gauge position that leads to high signal-to-noise ratios is almost the same. A dynamic calibration procedure has been developed in order to allow the reconstruction of contact force and torque components once per wheel turn. The capability of the developed device to correctly estimate tyre-road contact forces has been assessed, in a first stage, through indoor laboratory experimental test on an MTS Flat-Trac® testing machine. Results show that the implemented measuring system allows to reconstruct contact forces once per wheel turn with a precision that is comparable to that of existing high-cost measurement systems. Subsequently, outdoor tests with a vehicle having all four wheels equipped with the developed measuring device have also been performed. Reliability of the measurements provided by the developed sensor has been assessed by comparing the global measured longitudinal/ lateral forces and the product of the measured longitudinal/lateral accelerations times the vehicle mass. A good agreement has been found during all the performed manoeuvres.
机译:轮胎-路面接触力的测量是开发新的控制系统以改善车辆安全性和性能的第一步。轮胎路面接触力测量系统非常昂贵,并且会显着改变车辆的未悬挂弹簧质量以及轮胎的旋转惯性。因此,车辆动力学结果受到显着影响。结果,测得的接触力与实际工作条件下的接触力不对应。本文提出了一种新的低成本轮胎-路面接触力测量系统,该系统可以应用于乘用车。它的工作原理基于通过应变片测量轮辋的三个变形。轮胎-轮辋组件因此变成用于轮胎-道路接触力的传感器。应变仪位置对测量结果的影响已通过有限元模拟和实验测试进行了评估。已经证明,对于各种各样的轮辋,导致高信噪比的应变仪位置几乎是相同的。已经开发了动态校准程序,以允许每转一圈重新构造接触力和扭矩分量。在第一步中,已通过在MTSFlat-Trac®测试机上进行的室内实验室实验测试,评估了开发的设备正确估计轮胎-道路接触力的能力。结果表明,所实施的测量系统允许每转一圈重建一次接触力,其精度可与现有的高成本测量系统相媲美。随后,还对具有配备有已开发的测量装置的所有四个车轮的车辆进行了室外测试。通过比较整体测得的纵向/横向力与测得的纵向/横向加速度乘积乘以车辆质量,可以评估由发达传感器提供的测量结果的可靠性。在进行的所有操作中都找到了很好的协议。

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