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首页> 外文期刊>Remote sensing letters >The reproducibility of SfM algorithms to produce detailed Digital Surface Models: the example of PhotoScan applied to a high-alpine rock glacier
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The reproducibility of SfM algorithms to produce detailed Digital Surface Models: the example of PhotoScan applied to a high-alpine rock glacier

机译:SfM算法可重现以生成详细的数字表面模型:以PhotoScan为例应用于高高山岩石冰川

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摘要

In geomorphology, PhotoScan is a software that is used to produce Digital Surface Models (DSMs). It constructs 3D environments from 2D imagery (often taken by Unmanned Aerial Vehicles (UAV)) based on Structure-from-Motion (SfM) and Multi-View Stereo (MVS) principles. However, unpublished computer-vision algorithms used, contain random elements which can affect the accuracy of the outputs. For this letter, ten model runs with identical inputs were performed on UAV imagery of a rock glacier to analyse the magnitude of the variation between the different model outputs. This variation was quantified calculating the standard deviation of each cell value in the respective DSMs and derivatives (curvature). Places with steep slope gradients have considerably more DSM variation (up to 10 cm) but stay within the range of the model's accuracy (10 vertical cm) for 88 - 96% of the area. The edges of the model also show a larger variability (0.10 - 3 m), related to a lower number of overlapping images. These results should be accounted for when performing a geomorphological research at centimetre scale using PhotoScan, especially in areas with a complex relief. Using medium-quality runs, additional oblique viewpoints and respecting a minimum of five overlapping images can minimize the software's variations.
机译:在地貌学中,PhotoScan是用于生成数字表面模型(DSM)的软件。它基于运动结构(SfM)和多视图立体(MVS)原理从2D图像(通常由无人机(UAV)拍摄)构建3D环境。但是,使用的未发布的计算机视觉算法包含随机元素,这些元素可能会影响输出的准确性。对于这封信,在岩石冰川的无人机图像上进行了十次具有相同输入的模型运行,以分析不同模型输出之间的变化幅度。通过计算各个DSM和导数(曲率)中每个像元值的标准偏差来量化此变化。具有陡峭坡度的地方的DSM变化较大(最多10厘米),但在88%-96%的区域内仍处于模型精度的范围内(垂直10厘米)。模型的边缘还显示出较大的可变性(0.10-3 m),这与重叠图像的数量较少有关。当使用PhotoScan在厘米级进行地貌研究时,应考虑这些结果,尤其是在地形复杂的地区。使用中等质量的运行时,附加的斜视点并尊重至少五个重叠的图像可以最大程度地减少软件的变化。

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