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Accuracy of 3D Landscape Reconstruction without Ground Control Points Using Different UAS Platforms

机译:使用不同的UAS平台进行无地面控制点的3D景观重建的准确性

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The rapid increase of low-cost consumer-grade to enterprise-level unmanned aerial systems (UASs) has resulted in the exponential use of these systems in many applications. Structure from motion with multiview stereo (SfM-MVS) photogrammetry is now the baseline for the development of orthoimages and 3D surfaces (e.g., digital elevation models). The horizontal and vertical positional accuracies (x, y and z) of these products in general, rely heavily on the use of ground control points (GCPs). However, for many applications, the use of GCPs is not possible. Here we tested 14 UASs to assess the positional and within-model accuracy of SfM-MVS reconstructions of low-relief landscapes without GCPs ranging from consumer to enterprise-grade vertical takeoff and landing (VTOL) platforms. We found that high positional accuracy is not necessarily related to the platform cost or grade, rather the most important aspect is the use of post-processing kinetic (PPK) or real-time kinetic (RTK) solutions for geotagging the photographs. SfM-MVS products generated from UAS with onboard geotagging, regardless of grade, results in greater positional accuracies and lower within-model errors. We conclude that where repeatability and adherence to a high level of accuracy are needed, only RTK and PPK systems should be used without GCPs.
机译:从低成本的消费级到企业级的无人机系统(UAS)的迅速增长,导致这些系统在许多应用中得到了指数级的使用。多视图立体(SfM-MVS)摄影测量法的运动结构现在是正射影像和3D表面(例如数字高程模型)开发的基础。这些产品的水平和垂直位置精度(x,y和z)通常很大程度上取决于地面控制点(GCP)的使用。但是,对于许多应用程序,无法使用GCP。在这里,我们测试了14个UAS,以评估低起伏地形的SfM-MVS重建的位置和模型内准确性,而没有从消费者到企业级垂直起降(VTOL)平台的GCP。我们发现高的定位精度不一定与平台成本或等级有关,而是最重要的方面是使用后处理动力学(PPK)或实时动力学(RTK)解决方案对照片进行地理标记。由UAS生成的带有机载地理标记的SfM-MVS产品,无论等级如何,都可以提高位置精度,并减少模型内误差。我们得出的结论是,在需要可重复性和高度准确性的情况下,应仅使用RTK和PP​​K系统,而无需GCP。

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