无人机三维摄影测量制图与GIS开发案例研究:喀土穆火车站

Ali Y. Ali, Mohammed A. Aldalil, Yasir A. Almukashfi, Gamal H. Seedahmed
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引用次数: 0

摘要

航空和卫星图像通常被用作基于图像的地理空间数据收集、地图制作和更新目的的主要数据源。然而,获得它们可能是耗时且昂贵的。最近,无人机(uav)作为一种合适的技术正在兴起,它有可能以低成本提供具有非常高的空间和时间分辨率的信息。本文旨在展示和评估使用无人机进行3D摄影测量测绘和GIS开发的潜力,作为许多发展中国家负担得起的解决方案。以喀土穆火车站的一部分为例,在100米的飞行高度上,用大疆幻影4收集了127张图像。利用RTK-GPS和地面控制点来提高解参的绝对精度。使用Pix4D和Photo scan两种不同的软件生成标准地理空间产品,如数字地表模型(DSM)、数字地形模型(DTM)和正射像,覆盖0.225 km²,空间分辨率为3.61 cm。最终的正射影像以2.4 cm的定位精度提取特征用于制图。对无人机数据产品和最终输出进行了一般的定量和定性控制,表明所得精度符合国际标准。并对可能存在的问题和进一步的展望进行了讨论。获得的结果表明,无人机为创建高分辨率和高精度的正射影像提供了很好的机会,从而促进了地图的创建和更新。此外,它还展示了商业摄影测量软件包的自动三维重建能力。
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UAV 3D Photogrammetric Mapping & GIS Development Case Study: Khartoum Railway Station
Aerial and satellite images are conventionally used as a main data source for image-based geospatial data collection, map production, and updating purposes. However, it can be time consuming and costly to obtain them. Recently, Unmanned Aerial Vehicles (UAVs) are emerging as suitable technology, which has the potential to provide information with a very high spatial and temporal resolution at a low cost. This paper aims to demonstrate and evaluate the potential of using UAVs for 3D photogrammetric mapping and GIS development as an affordable solution for many developing countries. Part of Khartoum railway station is used as a case study in which 127 images were collected with a DJI Phantom 4 at a flying height of 100 m. RTK-GPS and ground control points are used to improve the absolute accuracy of dereferencing. Two different software, namely, Pix4D and Photo scan are used to generate standard geospatial products such as Digital Surface Model (DSM), Digital Terrain Model (DTM), and orthophoto covering 0.225 km² with a spatial resolution of 3.61 cm. The final orthophoto with a positional accuracy of 2.4 cm was used to extract features for mapping purposes. General quantitative and qualitative control of the UAV data products and the final outputs were performed, indicating that the obtained accuracies comply with international standards. Moreover, possible problems and further perspectives were also discussed. The obtained results demonstrate that UAVs provide promising opportunities to create high-resolution and highly accurate orthophotos, thus facilitating map creation and updating. In addition, it demonstrates the capability of commercial photogrammetric software packages for automatic 3D reconstruction.
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