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Laser-triangulation device for in-line measurement of road texture at medium and high speed

机译:激光三角测量装置,用于中高速道路纹理的在线测量

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摘要

The knowledge of the friction coefficient between road and tyres is a very precious information to implement vehicle active control, especially considering the optimisation of the braking action. One of the most important parameters able to influence such a coefficient is the road texture (microtexture and macrotexture). Although different methods are now available to perform reliable texture measurements, no well-established techniques currently exist for measuring the pavement texture at medium-high speed with real time data analysis during the usual vehicle operations.rnThis paper presents a method, based on two identical industrial laser-triangulation displacement transducers, allowing to get real time reliable road micro and macro-texture measurements during standard vehicle operations, even at medium and high speed. The presence of two transducers also allows to estimate the instantaneous vehicle speed, which is needed to obtain the road texture from the sensor time-histories. This means that the presented system can be considered as a stand-alone device able to give as an output the road texture (micro and macro) and also the vehicle speed without any other input. The paper also underlines the advantages of this method and its drawbacks. The method reliability is evidenced by some real time outdoor tests on the different road surfaces of the Pirelli test track and at different vehicle speeds.
机译:道路和轮胎之间的摩擦系数的知识是实施车辆主动控制的非常宝贵的信息,尤其是考虑到制动作用的优化。能够影响该系数的最重要参数之一是道路纹理(微观纹理和宏观纹理)。尽管现在有不同的方法可以执行可靠的纹理测量,但目前尚不存在在常规车辆操作过程中通过实时数据分析以中高速测量路面纹理的成熟技术。本文基于两种相同的方法,提出了一种方法。工业激光三角位移传感器,即使在中速和高速下,也可以在标准车辆操作过程中实时获得可靠的道路微观和宏观纹理测量结果。两个换能器的存在还允许估计瞬时车辆速度,这是从传感器时间历史中获取道路纹理所必需的。这意味着,所提出的系统可以被认为是能够在没有任何其他输入的情况下提供道路纹理(微观和宏观)以及车速作为输出的独立设备。本文还强调了这种方法的优点及其缺点。该方法的可靠性通过在倍耐力测试跑道的不同路面上以及在不同车速下进行的一些实时室外测试得到证明。

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