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Metric Accuracy of Digital Elevation Models from WorldView-3 Stereo-Pairs in Urban Areas

机译:WorldView-3立体对在城市中的数字高程模型的度量精度

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WorldView-3 satellite is providing images with an unprecedented combination of high spatial and spectral resolution. The stereo capabilities and the very high resolution of the panchromatic band (0.31 m) have been fostering new applications in urban areas, where the complexity of the morphology requires a higher level of detail. The present technical note aims to test the accuracy of digital elevation models that can be obtained by WorldView-3 stereo-pairs in these particular contexts, with an operational state-of-the-art algorithm. Validation is performed using check points and existing models of the area (from LiDAR data and oblique aerial images). The experiments, conducted over the city of Bologna (Italy) with six images, proved that roof surfaces and open spaces can be reconstructed with an average error of 1–2 pixels, but severe discrepancies frequently occur in narrow roads and urban canyons (up to several metres in average). The level of completeness achievable with only one pair is extremely variable (ranging from 50% to 90%), due to the combined effect of the geometry of acquisition and the specific urban texture. Better results can be obtained by using more than one pair. Furthermore, smaller convergence angles can be beneficial for the reconstruction of specific urban structures, such as soaring towers.
机译:WorldView-3卫星为图像提供了前所未有的高空间和光谱分辨率组合。立体声功能和全色带(0.31 m)的高分辨率已经在城市地区促进了新的应用,在这些地区,形态的复杂性要求更高的细节水平。本技术说明旨在测试WorldView-3立体声对在这些特定情况下可以使用最新技术算法对数字高程模型的准确性。使用该区域的检查点和现有模型进行验证(来自LiDAR数据和倾斜的航拍图像)。在意大利博洛尼亚市进行的实验以六幅图像进行,证明屋顶表面和开放空间可以重建,平均误差为1-2个像素,但是在狭窄的道路和城市峡谷中,经常出现严重差异(最大平均几米)。由于采集的几何形状和特定的城市纹理的共同作用,只有一对可以实现的完整性水平变化很大(从50%到90%不等)。通过使用多于一对,可以获得更好的结果。此外,较小的会聚角可能有助于重建特定的城市结构,例如高耸的塔楼。

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