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THE ESTIMATION OF PRECISIONS IN THE PLANNING OF UAS PHOTOGRAMMETRIC SURVEYS

机译:UAS摄影测量调查计划中的精度估算

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The Unmanned Aerial System (UAS) is widely used in the photogrammetric surveys both of structures and of small areas. Geomatics focuses the attention on the metric quality of the final products of the survey, creating several 3D modelling applications from UAS images. As widely known, the quality of results derives from the quality of images acquisition phase, which needs an a priori estimation of the expected precisions. The planning phase is typically managed using dedicated tools, adapted from the traditional aerial-photogrammetric flight plan. But UAS flight has features completely different from the traditional one. Hence, the use of UAS for photogrammetric applications today requires a growth in knowledge in planning. The basic idea of this research is to provide a drone photogrammetric flight planning tools considering the required metric precisions, given a priori the classical parameters of a photogrammetric planning: flight altitude, overlaps and geometric parameters of the camera. The created “office suite” allows a realistic planning of a photogrammetric survey, starting from an approximate knowledge of the Digital Surface Model (DSM), and the effective attitude parameters, changing along the route. The planning products are the overlapping of the images, the Ground Sample Distance (GSD) and the precision on each pixel taking into account the real geometry. The different tested procedures, the obtained results and the solution proposed for the a priori estimates of the precisions in the particular case of UAS surveys are here reported.
机译:无人机系统(UAS)广泛用于结构和小区域的摄影测量。 Geomatics将注意力集中在调查的最终产品的度量质量上,从而从UAS图像创建了多个3D建模应用程序。众所周知,结果的质量来自图像采集阶段的质量,该阶段需要对预期精度进行事前估算。通常使用专用工具对计划阶段进行管理,这些工具是根据传统的航空摄影飞行计划进行改编的。但是UAS飞行具有与传统飞行完全不同的功能。因此,将UAS用于当今的摄影测量应用需要规划知识的增长。这项研究的基本思想是,在事先考虑到摄影测量计划的经典参数(飞行高度,摄像机的重叠和几何参数)的前提下,提供一种考虑所需的度量精度的无人机摄影测量飞行计划工具。创建的“办公套件”可以从数字表面模型(DSM)的近似知识以及有效的姿态参数开始,沿路线变化,从而进行摄影测量的实际计划。规划产品是图像的重叠,地面采样距离(GSD)和每个像素在考虑实际几何形状时的精度。在此报告了在UAS调查的特定情况下针对精度的先验估计而提出的不同测试程序,获得的结果以及建议的解决方案。

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