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Application of 3D Laser Scanning on Measuring Pavement Roughness

机译:3D激光扫描在路面粗糙度测量中的应用

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This study evaluates the use of 3D laser scanning technology to measure pavement roughness. Three 100 m test sections, ranging from smooth to very rough (with apparent cracks, areas of distress, and manholes) were selected to investigate the capability of the 3D laser scanning technology. Rod and level surveys were conducted to establish the reference profile for each test section. In addition, Multiple Laser Profiler (MLP) was employed to measure the multiple paths of each test section. Results from multiple paths of 3D laser scanning were compared with those from MLP and rod and level surveys. The 100 m reference profiles indicate similar results between the 3D laser scanning and rod and level survey. With 95 percent confidence, the statistical paired-samples T-test indicates that there is no significant variation between the results from rod and level surveys and 3D laser scanning. The data include IRI from 2.83 to 13.15 m/km such that they represent a wide spectrum of pavement conditions. The coefficient of correlation (R~2) between the MLP and 3D laser scanning from 20 longitudinal profiles is 0.99. The 3D laser scanning is a static method and thus the data do not have to be filtered and therefore there is no associated cut-off wavelength problem. Based on the results gathered, the 3D laser scanner is able to collect reliable profile data and has high potential to be used as a QC/QA tool for construction acceptance. Through 3D laser scanning technology, pavement engineers are able to visualize the pavement roughness covering the entire pavement width in unprecedented detail that consists of extremely rich and accurate point-cloud data.
机译:这项研究评估了使用3D激光扫描技术测量路面粗糙度的情况。选择了三个100 m的测试区域,从光滑到非常粗糙(有明显的裂纹,遇险区域和人孔),以研究3D激光扫描技术的能力。进行杆和水平调查以建立每个测试部分的参考轮廓。另外,采用了多重激光轮廓仪(MLP)来测量每个测试部分的多个路径。将来自3D激光扫描的多个路径的结果与来自MLP以及棒和水平测量的结果进行了比较。 100 m的参考轮廓表明3D激光扫描与棒和水平测量之间的相似结果。统计配对样本T检验具有95%的置信度,表明杆和料位测量以及3D激光扫描的结果之间没有显着差异。数据包括2.83至13.15 m / km的IRI,因此它们代表了广泛的路面状况。来自20个纵向轮廓的MLP和3D激光扫描之间的相关系数(R〜2)为0.99。 3D激光扫描是一种静态方法,因此不必过滤数据,因此不存在相关的截止波长问题。基于收集的结果,3D激光扫描仪能够收集可靠的轮廓数据,并且具有很高的潜力,可以用作建筑验收的QC / QA工具。通过3D激光扫描技术,路面工程师能够以前所未有的细节可视化覆盖整个路面宽度的路面粗糙度,其中包括极其丰富且精确的点云数据。

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