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Project Level Rehabilitation Design of Asphalt Pavements Using Laser and LiDAR Technologies

机译:使用激光和激光雷达技术项目级康复设计沥青路面

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The evaluation of asphalt concrete pavement performance has become more sophisticated with recent developments of 3-D pavement surface profiling systems and 360° mobile LiDAR. These technologies complement inertial profiling systems and allow for 100 percent coverage of the pavement surface and adjoining right-of-way to be surveyed at highway speeds. Beginning in 2013, Alberta Transportation (AT) started collecting pavement distress and LiDAR point cloud data as part of their network data collection program. The 3-D Laser Crack Measurement System (LCMS) provides crack distress extent and severity data. Roadway geometric data (roadway alignment and curve information, pavement width, cross-fall, superelevation, side slope/ditch depth/backslope cross section information) is provided from the LiDAR survey. These data along with inertial roadway profile, forward and panoramic video, and spatial reference data were collected simultaneously with one vehicle platform at highway speeds. Using a project on Hwy 47 about 250 km west of Edmonton that has been programmed for rehabilitation, several case studies have been undertaken. The studies demonstrate how the data provided by the LCMS and LiDAR systems can be applied to the design process to better understand pavement behaviour, provide more complete data for assessing geometric requirements and to assess requirements for pre-overlay repairs.
机译:沥青混凝土路面性能的评价变得更加复杂,最近的3-D路面剖面系统和360°移动激光器的发展变得更加复杂。这些技术补充了惯性分析系统,并允许在路面表面的100%覆盖,并在公路速度下进行调查的右路。从2013年开始,Alberta运输(AT)开始收集路面遇险和LIDAR点云数据作为网络数据收集程序的一部分。 3-D激光裂纹测量系统(LCMS)提供了破解困境范围和严重性数据。 LIDAR调查提供巷道几何数据(道路对准和曲线信息,路面宽度,横落,超级,侧倾/沟深度/后坡横截面信息。这些数据以及惯性巷道型材,前进和全景视频以及在公路速度的一台车平台上同时收集空间参考数据。使用HWY 47的项目,在Edmonton以西约250公里被编程为康复,已经进行了几项案例研究。这些研究表明,LCMS和LIDAR系统提供的数据如何应用于设计过程以更好地了解路面行为,提供更完整的数据来评估几何要求,并评估预叠加修理的要求。

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