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Estimation of Tire-Road Contact Features Using Strain-Based Intelligent Tire

机译:基于应变的智能轮胎估算轮胎道路接触特征

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摘要

Sensors attached inside the tire near the contact area can provide crucial information on contact characteristics, e.g., slip, forces, and deformation of tires. Vehicle control systems such as antilock braking systems (ABS) and vehicle-stability control (VSC) can be enhanced by leveraging this information, since control algorithms can be updated based on directly measured parameters from intelligent tires rather than estimated parameters based on complex vehicle dynamics and on-board sensor measurement. Moreover, tire characteristics can be investigated by scrutinizing the sensor measurements on the basis of well-defined physical theories on tire mechanics. In this article, estimations of tire contact features have been studied with the circumferential strains measured inside the tire. These parameters were imported to physical tire models to finally predict lateral force, which plays the crucial role in algorithms of vehicle control systems, as well as in analysis of lire performance.
机译:附近接触区域附近的轮胎内部的传感器可以提供关于接触特性的重要信息,例如轮胎的滑动,力和变形。 通过利用该信息,可以增强诸如防姑式制动系统(ABS)和车辆稳定控制(VSC)的车辆控制系统,因为可以基于直接测量的来自智能轮胎的直接测量参数而不是基于复杂的车辆动态的估计参数来更新控制算法 和板载传感器测量。 此外,可以通过基于轮胎力学上的良好定义的物理理论来仔细审查传感器测量来研究轮胎特性。 在本文中,已经研究了轮胎接触特征的估计,并且在轮胎内部测量的圆周菌株进行了研究。 将这些参数导入到物理轮胎模型中,以最终预测横向力,这在车辆控制系统的算法中起着至关重要的作用,以及对莱雷性能的分析。

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