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首页> 外文期刊>ISPRS International Journal of Geo-Information >The Use of Nadir and Oblique UAV Images for Building Knowledge
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The Use of Nadir and Oblique UAV Images for Building Knowledge

机译:天底和倾斜无人机图像在建筑知识中的使用

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This paper focuses on the processing and study of 3D models obtained from images captured by an unmanned aerial vehicle (UAV). In particular, we wanted to study the accuracy gains achieved in the surveying and the measurement, such as height, area, and volume, of the dimensions of the buildings in the 3D models obtained with both nadir and oblique UAV flights. These latter types of flights are particularly suitable for the 3D modeling of cities or urban agglomerations, where it is important to achieve a complete building reconstruction, including fa???§ades and footprints of buildings. For this purpose, several UAV surveys with both nadir and oblique axes were performed. The nadir flight acquired images over an area of about 3.5 hectares containing 30 buildings, while the second flight, performed with both a nadir camera and an oblique camera, was conducted on a single building. The images from the flights were processed with Photoscan software by Agisoft and with Pix4D, studying their different potentialities and functionality. The results were compared with the data from the 1:2000 scale Geotopographic Database (DBGT), with the results of a Global Navigation Satellite System (GNSS) survey and with 3D model from the Terrestrial Laser Scanner (TLS) survey. The obtained results have shown that oblique UAV flights increase the achievable accuracy both in terms of the number of points in a point cloud, and in the in measurements taken on the 3D models, with respect to the limited cost, and at the increase in time for surveying and image processing.
机译:本文着重于从无人飞行器(UAV)捕获的图像中获得的3D模型的处理和研究。特别是,我们想研究在天底和倾斜无人机飞行获得的3D模型中,建筑物的尺寸在高度和面积上的测量和测量所获得的准确性,例如高度,面积和体积。后一种类型的航班特别适用于城市或城市群的3D建模,在这些模型中,实现完整的建筑物重建(包括建筑物的外观和占地面积)非常重要。为了这个目的,用最低点和斜轴进行了几次无人机调查。天底飞行在约3.5公顷的区域内采集了30座建筑物的图像,而第二次飞行是在天底摄像头和斜角摄像头上进行的,是在单个建筑物上进行的。通过Agisoft的Photoscan软件和Pix4D处理了飞行中的图像,研究了它们的不同潜力和功能。将结果与1:2000比例尺地理数据库(DBGT)的数据,全球导航卫星系统(GNSS)的测量结果以及地面激光扫描仪(TLS)的3D模型进行了比较。获得的结果表明,相对于有限的成本和时间的增加,倾斜的无人机飞行在点云中的点数方面以及在3D模型上进行的测量方面都提高了可达到的精度。用于测量和图像处理。

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