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Reconstruction of 3D Pavement Texture on Handling Dropouts and Spikes Using Multiple Data Processing Methods

机译:使用多种数据处理方法处理辍学和尖峰3D路面纹理的重建

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Tire-pavement interactions, like friction and rolling resistance, are significantly influenced by pavement macro-texture and micro-texture. Accurate texture measurement at the micro-texture level is vital to achieve the desired level of safety, comfort, and sustainability of the pavement. However, the existence of dropouts and spikes in the collected data is still inevitable based on current laser devices, which leads to erroneous texture characterization. This study utilized an advanced laser sensor to measure three-dimensional (3D) pavement texture at the micro-level at a given speed. Using a proposed interpolation method, the dropout areas in the raw measurements were filled up. Butterworth's high-pass and low-pass filters were applied to separate two texture components from the profile. Based on a statistical analysis for the micro-texture amplitude, an appropriate threshold was determined in order to identify the spikes. A three-step-spike-removal method was proposed and found to be effective in clearing the spikes. The 3D pavement profiles were finally reconstructed without dropouts and spikes. Mean profile depth (MPD) was calculated with different baselines. It was found that the presence of spikes leads to a greater MPD value and the MPD is sensitive to the baseline length. A shorter baseline is recommended to mitigate the impact of spikes on the accuracy of the MPD.
机译:轮胎路面相互作用,如摩擦和滚动阻力,受到路面宏观纹理和微观纹理的显着影响。微纹理水平的精确质地测量对于实现所需的安全性,舒适度和路面的可持续性至关重要。然而,基于电流激光器件仍然不可避免地存在辍学和峰值,这导致错误的纹理表征。本研究利用先进的激光传感器以给定速度在微级测量三维(3D)路面纹理。使用所提出的插值方法,填充了原始测量中的辍学区域。 Butterworth的高通和低通滤波器被应用于从概况中分离两个纹理组件。基于微观纹理幅度的统计分析,确定了适当的阈值以识别尖峰。提出了一种三步钉去除方法,发现有效地清除钉子。在没有辍学和尖峰的情况下最终重建3D路面型材。使用不同的基线计算平均分布深度(MPD)。发现尖峰的存在导致更大的MPD值,并且MPD对基线长度敏感。建议较短的基线来减轻尖峰对MPD精度的影响。

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