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Combining nadir and oblique UAV imagery to reconstruct quarry topography: methodology and feasibility analysis

机译:结合天底和倾斜无人机影像重建采石场地形:方法学和可行性分析

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ABSTRACT The feasibility of unmanned-aerial-vehicle-based photogrammetry was assessed for the reconstruction of high-resolution topography and geomorphic features of quarries by nadir and off-nadir imagery. The test site was a quarry located in the rural area of Turi (Bari, southern Italy). Two processing scenarios were created. Nadir images were initially used, and images acquired with off-nadir angles were added. An accurate set of ground control points (GCPs) were surveyed for both georeferencing purposes and validation processes. In the reconstruction of the surfaces, an accuracy of a few centimeters was achieved in the final positioning of point clouds representing the main geometries of quarry environment. However, greatest differences were found along the edges or the lines characterized by sudden slope changes. To better understand such results, some characteristic quarry shapes depicted by both the scenarios were compared to those surveyed by a total station used as an independent benchmark technique. It allowed to define the benefits introduced by the joint use of nadir and oblique images in the delineation of quarry shapes, surface discontinuities and better descriptions of sub-vertical walls. Beside the evaluation of benefits introduced by use of oblique cameras, the effectiveness of the proposed methodology was also discussed with alternative technologies. Unmanned aerial platforms represent an effective solution, with the need for few accurate GCPs.
机译:摘要评估了基于无人飞行器的摄影测量技术通过最低点和最低点图像重建采石场的高分辨率地形和地貌特征的可行性。测试地点是一个位于图里农村地区(意大利南部巴里)的采石场。创建了两个处理方案。最初使用了最低点图像,并添加了以最低点角获取的图像。为进行地理配准和验证过程,对一组精确的地面控制点(GCP)进行了调查。在表面重建中,代表采石场环境主要几何形状的点云的最终定位精度达到了几厘米。然而,沿边缘或陡峭变化的特征线发现最大的差异。为了更好地理解此类结果,将这两种情况下描绘的某些特征采石场形状与用作独立基准技术的全站仪进行了比较。它允许定义由天底和倾斜图像的联合使用所带来的好处,这些特征用于描述采石场的形状,表面不连续性以及对垂直地下墙的更好描述。除了评估使用斜置摄像头带来的收益外,还使用替代技术讨论了所提出方法的有效性。无人机平台是一种有效的解决方案,几乎不需要精确的GCP。

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