首页> 外文期刊>International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences >INTERACTION BETWEEN DIRECT GEOREFERENCING, CONTROL POINT CONFIGURATION AND CAMERA SELF-CALIBRATION FOR RTK-BASED UAV PHOTOGRAMMETRY
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INTERACTION BETWEEN DIRECT GEOREFERENCING, CONTROL POINT CONFIGURATION AND CAMERA SELF-CALIBRATION FOR RTK-BASED UAV PHOTOGRAMMETRY

机译:基于RTK的UAV摄影测量的直接地理,控制点配置和摄像机自校准之间的交互

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Unmanned Aerial Vehicles (UAV) are enjoying increasing popularity in the photogrammetric community. The Chinese supplier DJI is the market leader with about 70% of the global consumer UAV market. The Phantom model has been available for more than 10 years and its current version "RTK" is equipped with a 2-frequency GNSS receiver, as a basis for direct georeferencing of image flights, using RTK or PPK technologies.In the context of the paper, different case studies are investigated, which allow statements on the geometric accuracy of UAV image flights as well as on the self-calibration of the camera systems.In the first example, four DJI Phantom 4 RTK systems are examined, which were flown in a cross flight pattern configuration on the area of the UAV test field "Zeche Zollern" in Dortmund, Germany. The second example analyses the results of an open moorland area where the establishment of GCPs is extremely difficult and expensive, hence direct georeferencing offers a promising way to evaluate deformations, soil movements or mass calculations. In this example a DJI Matrice 210 v2 RTK drone has been used and the results of two different software packages (Agisoft Metashape and RealityCapture) are analysed. The third example presents a reference building that has been established by the Lower Saxony administration for geoinformation in order to evaluate UAV photogrammetry for cadastral purposes. Here again a DJI Phantom 4 RTK has been tested in a variety of flight configurations and a large number of high precision ground control and check points.The case studies show that the RTK option leads to sufficient results if at least 1 GCP is introduced. Flights without any GCPs lead to a significant height error in the order of up to 30 GSD.
机译:无人驾驶飞行器(UAV)在摄影测量界越来越受欢迎。中国供应商DJI是市场领导者,占全球消费者无人机市场的70%。幻影模型已有超过10年的时间,其当前版本的“RTK”配备了2频率的GNSS接收器,作为使用RTK或PPK技术直接地地地地地地地地地地地地地地地地地理学的基础。在纸质的上下文中调查了不同的案例研究,这允许对UAV图像飞行的几何精度以及相机系统的自校准来陈述。在第一个示例中,检查了四个DJI幻像4 RTK系统,从而播出德国多特蒙德UAV测试领域“Zeche Zollern”区域交叉飞行模式配置。第二个例子分析了开放的荒野地区的结果,其中建立GCPS非常困难且昂贵,因此直接地地理传播提供了评估变形,土壤运动或大规模计算的有希望的方式。在该示例中,已使用DJI矩阵210 V2 RTK无人机,并分析了两个不同软件包(AGISOFT MetaShape和RealityCapture)的结果。第三个例子呈现了由下萨克森州的地理信息管理的参考建筑,以便为达地籍目的评估UAV摄影测量。这里再次进行DJI幻像4 RTK在各种飞行配置和大量高精度地面控制和检查点中进行了测试。案例研究表明,如果引入至少1个GCP,RTK选项会导致足够的结果。没有任何GCP的航班导致高达30 GSD的大约高度误差。

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