首页> 外文期刊>Bulletin of University of Agricultural Sciences and Veterinary Medicine Cluj-Napoca: Horticulture >Using Photogrammetric UAV Measurements as Support for Classical Topographical Measurements in Order to Obtain the Topographic Plan for Urban Areas
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Using Photogrammetric UAV Measurements as Support for Classical Topographical Measurements in Order to Obtain the Topographic Plan for Urban Areas

机译:使用摄影测量无人机测量值作为经典地形测量值的支持,以获取城市地区的地形图

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This article aims to highlight the benefits of UAV photogrammetric measurements in addition to classical ones. It will also deal with the processing and integration of the point cloud, respectively the digital elevation model in topo-cadastral works. The main purpose of this paper is to compare the results obtained using the UAV photogrammetric measurements with the results obtained by classical methods. It will briefly present the classical measurements made with the total station. In the present project, the closed-circuit traverse and the supported on the endings traverse were made using known coordinate points. Determining the coordinates of the points used for the traverses was done by GNSS methods. The area on which the measurements were made is 67942m2 and is covered by 31 determined station points. From these points, 13 were used as ground control points, respectively components of the aero-triangulation network and 17 points were used to control the obtained results by comparing their coordinates obtained by classical methods with those obtained by the UAV photogrammetric method. It was intended that the constraint points of the aero triangulation to be uniformly distributed on the studied surface.
机译:本文旨在突出显示无人机摄影测量法除传统测量法外的优势。它还将处理点云的处理和集成,以及地形地籍工程中的数字高程模型。本文的主要目的是将使用无人机摄影测量法获得的结果与通过经典方法获得的结果进行比较。它将简要介绍使用全站仪进行的经典测量。在本项目中,闭环导线和末端导线的支撑是使用已知的坐标点进行的。通过GNSS方法确定用于导线的点的坐标。进行测量的面积为67942平方米,被31个确定的站点所覆盖。从这些点中,将13个点用作地面控制点,分别将航空三角测量网络的组成部分和17个点用于通过比较经典方法获得的坐标与UAV摄影测量方法获得的坐标来控制所得结果。旨在将航空三角剖分的约束点均匀地分布在研究表面上。

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