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On the applicability of a scan-based mobile mapping system for monitoring the planarity and subsidence of road surfaces - Pilot study on the A44n motorway in Germany

机译:基于扫描的移动制图系统在监测路面平整度和塌陷度方面的适用性-德国A44n高速公路的初步研究

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Kinematic laser scanning is widely used for the fast and accurate acquisition of road corridors. In this context, road monitoring is a crucial application, since deficiencies of the road surface due to non-planarity and subsidence put traffic at risk. In recent years, a Mobile Mapping System (MMS) has been developed at the University of Bonn, consisting of a GNSS/IMU unit and a 2D laser scanner. The goal of this paper is to evaluate the accuracy and precision of this MMS, where the height component is of main interest. Following this, the applicability of the MMS for monitoring the planarity and subsidence of road surfaces is analyzed. The test area for this study is a 6 km long section of the A44n motorway in Germany. For the evaluation of the MMS, leveled control points along the motorway as well as point cloud comparisons of repeated passes were used. In order to transform the ellipsoidal heights of the MMS into the physical height system of the control points, undulations were utilized. In this respect, a local tilt correction for the geoid model was determined based on GNSS baselines and leveling, leading to a physical height accuracy of the MMS of < 10 mm (RMS). The related height precision has a standard deviation of about 5 mm. Hence, a potential subsidence of the road surface in the order of a few cm is detectable. In addition, the point clouds were used to analyze the planarity of the road surface. In the course of this, the cross fall of the road was estimated with a standard deviation of < 0.07 %. Yet, no deficiencies of the road surface in the form of significant rut depths or fictive water depths were detected, indicating the proper condition of the A44n motorway. According to our tests, the MMS is appropriate for road monitoring.
机译:运动学激光扫描被广泛用于快速,准确地采集道路走廊。在这种情况下,道路监控是至关重要的应用,因为由于非平面性和沉陷导致的路面缺陷使交通处于危险之中。近年来,波恩大学开发了一种移动制图系统(MMS),该系统由GNSS / IMU单元和2D激光扫描仪组成。本文的目的是评估这种MMS的准确性和精度,其中高度分量是主要关注点。在此之后,分析了MMS在监测路面平整度和塌陷度方面的适用性。这项研究的测试区域是德国A44n高速公路6公里长的部分。为了评估MMS,使用了沿高速公路的水平控制点以及重复通过的点云比较。为了将MMS的椭圆高度转换为控制点的物理高度系统,使用了起伏。在这方面,基于GNSS基线和水平确定了大地水准面模型的局部倾斜校正,从而导致MMS的物理高度精度小于10毫米(RMS)。相关的高度精度具有约5 mm的标准偏差。因此,可以检测到大约几厘米的路面下沉。另外,使用点云分析路面的平面性。在此过程中,估计道路的交叉坠落,标准偏差<0.07%。但是,未检测到显着的车辙深度或虚拟水深形式的路面缺陷,表明A44n高速公路的状况良好。根据我们的测试,MMS适用于道路监控。

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