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Evaluating the Correctness of Airborne Laser Scanning Data Heights Using Vehicle-Based RTK and VRS GPS Observations

机译:使用基于车辆的RTK和VRS GPS观测值评估机载激光扫描数据高度的正确性

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In this study, we describe a system in which a GPS receiver mounted on the roof of a car is used to provide reference information to evaluate the elevation accuracy and georeferencing of airborne laser scanning (ALS) point clouds. The concept was evaluated in the Klaukkala test area where a number of roads were traversed to collect real-time kinematic data. Two test cases were evaluated, including one case using the real-time kinematic (RTK) method with a dedicated GPS base station at a known benchmark in the area and another case using the GNSSnet virtual reference station service (VRS). The utility of both GPS methods was confirmed. When all test data were included, the mean difference between ALS data and GPS-based observations was −2.4 cm for both RTK and VRS GPS cases. The corresponding dispersions were ±4.5 cm and ±5.9 cm, respectively. In addition, our examination did not reveal the presence of any significant rotation between ALS and GPS data.
机译:在这项研究中,我们描述了一个系统,其中安装在汽车顶部的GPS接收器用于提供参考信息,以评估机载激光扫描(ALS)点云的高程精度和地理配准。在Klaukkala测试区域对概念进行了评估,该区域穿越了多条道路以收集实时运动学数据。对两个测试案例进行了评估,其中一个案例是使用实时运动学(RTK)方法,在该地区已知基准处使用了专用GPS基站,另一个案例是使用GNSSnet虚拟参考站服务(VRS)。两种GPS方法的实用性均得到确认。包括所有测试数据后,RTK和VRS GPS案例的ALS数据和基于GPS的观测值之间的平均差为-2.4 cm。相应的分散度分别为±4.5 cm和±5.9 cm。此外,我们的检查未发现ALS与GPS数据之间存在任何明显的旋转。

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