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首页> 外文期刊>International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences >USING DJI PHANTOM 4 RTK DRONE FOR TOPOGRAPHIC MAPPING OF COASTAL AREAS
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USING DJI PHANTOM 4 RTK DRONE FOR TOPOGRAPHIC MAPPING OF COASTAL AREAS

机译:使用DJI PHANTOM 4 RTK无人机对沿海地区进行地形映射

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摘要

Imagery acquisition systems by Unmanned Aerial Vehicles (UAVs) have been rapidly evolving within the last few years. In mapping applications, it is the introduction of a considerable amount of Ground Control Points (GCPs) that enables the final reconstruction of a real-scale framed model. Since the survey of GCPs generally requires the use of total stations or GNSS receivers in Real Time Kinematic (RTK), either with or without a Network approach (NRTK), this on-site operation is particularly time consuming. In addition, the lack of clearly image-recognizable points may force the use of artificial markers (signalised GCPs) whenever no features are naturally available in the field. This implies a real waste of time for the deployment of the targets, as well as for their recovery. Recently, aircrafts’ manufacturers have integrated the on-board RTK capability on their UAVs. In such a way, the high precision GNSS system allows the 3D position detection of the camera at the time of each capture within few centimetres. In this work, we tested the DJI Phantom 4 RTK for the topographic survey of a coastal section in the Northern Adriatic Sea (Italy). The flights were performed flying at an 80?m altitude to ensure a Ground Sample Distance (GSD) of about 2 centimetres. The site extended up to 2 kilometres longitudinally. The results confirm that the on-board RTK approach really speeds up the precise mapping of coastal regions and that a single GCP may be needed to make a reliable estimation of the focal length.
机译:在过去的几年中,无人飞行器(UAV)的图像采集系统一直在迅速发展。在制图应用中,正是引入了大量的地面控制点(GCP),才可以最终重建真实比例的框架模型。由于对GCP的调查通常要求在实时运动(RTK)中使用全站仪或GNSS接收器,无论是否使用网络方法(NRTK),因此这种现场操作特别耗时。此外,如果现场没有自然可用的特征,则缺乏清晰的图像可识别点可能会迫使使用人工标记(带信号的GCP)。这意味着部署目标以及恢复目标确实浪费时间。最近,飞机制造商已经在其无人机上集成了机载RTK功能。以这种方式,高精度GNSS系统允许在几厘米内的每次捕获时对摄像机进行3D位置检测。在这项工作中,我们测试了DJI Phantom 4 RTK,以对北亚得里亚海(意大利)的沿海地区进行地形测量。这些飞行是在80?m的高度进行的,以确保大约2厘米的地面采样距离(GSD)。该场地纵向延伸了2公里。结果证实,机载RTK方法确实加快了沿海地区的精确制图,并且可能需要单个GCP才能可靠地估计焦距。

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