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Construction of Three-Dimensional Road Surface and Application on Interaction between Vehicle and Road

机译:三维路面的构建及其在车路相互作用中的应用

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摘要

The quantitative description is given to three-dimensional micro and macro self-similar characteristics of road surface from the perspective of fractal geometry using FBM stochastic midpoint displacement and diamond-square algorithm in conjunction with fractal characteristics and statistical characteristics of standard pavement determined by estimation method of box-counting dimension. The comparative analysis between reconstructed three-dimensional road surface spectrum and theoretical road surface spectrum and correlation coefficient demonstrate the high reconstruction accuracy of fractal reconstructed road spectrum. Furthermore, the bump zone is taken as an example to reconstruct a more arbitrary 3D road model through isomorphism of special road surface with stochastic road surface model. Measurement is taken to assume the tire footprint on road surface to be a rectangle, where the pressure distribution is expressed with mean stiffness, while the contact points in the contact area are replaced with a number of springs. Two-DOF vehicle is used as an example to analyze the difference between three-dimensional multipoint-and-plane contact and traditional point contact model. Three-dimensional road surface spectrum provides a more accurate description of the impact effect of tire on road surface, thereby laying a theoretical basis for studies on the dynamical process of interaction of vehicle-road surface and the road friendliness.
机译:从分形几何的角度,利用FBM随机中点位移和菱形平方算法结合估计方法确定的标准路面的分形特征和统计特征,对路面的三维微观和宏观自相似特征进行了定量描述。盒计数尺寸。三维三维路面谱与理论路面谱及相关系数的比较分析表明,分形路面谱具有较高的重建精度。此外,以凹凸带为例,通过特殊路面的同构与随机路面模型,重构出更加任意的3D道路模型。进行测量时,假定路面上的轮胎足迹为矩形,其中压力分布用平均刚度表示,而接触区域中的接触点则用许多弹簧代替。以两自由度车辆为例,分析了三维多点平面接触与传统点接触模型的区别。三维路面光谱可以更准确地描述轮胎对路面的影响,从而为研究车辆-路面相互作用和路面友好性的动力学过程奠定理论基础。

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