首页> 外文期刊>International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences >EVALUATING THE QUALITY OF PHOTOGRAMMETRIC POINT-CLOUDS IN CHALLENGING GEO-ENVIRONMENTS – A CASE STUDY IN AN ALPINE VALLEY
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EVALUATING THE QUALITY OF PHOTOGRAMMETRIC POINT-CLOUDS IN CHALLENGING GEO-ENVIRONMENTS – A CASE STUDY IN AN ALPINE VALLEY

机译:在挑战地质环境中评估摄影测量点云的质量 - 以高山谷为例

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Precise and accurate three-dimensional geospatial data has become increasingly available thanks to advances in both Terrestrial Laser Scanning (TLS) and Structure-from-Motion Photogrammetry (SfM). These tools provide valuable information for mapping geomorphological features and detect surface changes in mountainous environments. The exploitation of 3D point-clouds has been proven tremendously useful in the field of geosciences. It remains, however, controversial whether cost efficient photogrammetry can provide as accurate and reliable geospatial information as the significantly more expensive laser scanning or not. In this study, a rockfall case site in the territory of Obergurgl, Austria, is investigated in order to provide answers to the above question in a complex environment. The analysis includes different terrestrial photogrammetry configurations aiming to comprehensively define the strengths and limitations of terrestrial photogrammetry over TLS. The latter constitutes an optimized methodology that provides guidelines for costly future assessments as part of the site investigation phase in geohazard management. There are no doubts that compared to traditional and conventional surveying methods TLS and Photogrammetry both offer products much faster and with a much higher data density. In the current study, we show that when photogrammetry is applied following a well-defined optimized strategy, it can be potentially an adequate alternative to more costly TLS datasets for mass movement assessment and monitoring purposes.
机译:由于陆地激光扫描(TLS)和结构 - 从运动摄影测量(SFM)的进步,精确和准确的三维地理空间数据变得越来越多。这些工具提供了用于绘制地貌特征的有价值的信息,并检测山区环境中的表面变化。在地球科学领域,已经证明了3D点云的开发。然而,它仍然存在有争议的成本高效摄影测量可以提供精确可靠的地理空间信息,作为明显更昂贵的激光扫描。在这项研究中,调查了奥地利Obergurgl GL境内的岩石案例,以便在复杂的环境中提供上述问题的答案。该分析包括旨在全面地定义TLS上地面光摄影的强度和限制的不同地面摄影测量配置。后者构成了优化的方法,可提供昂贵的未来评估指南,作为地质曲集型管理的现场调查阶段的一部分。与传统和传统的测量方法相比,TLS和摄影测量均无疑是提供更快,更高的数据密度。在目前的研究中,我们表明,当通过定义明确定义的优化策略应用摄影测量时,可能是对批量移动评估和监测目的的更昂贵的TLS数据集可能是足够的替代方案。

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