首页> 外文期刊>International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences >SENSOR- AND SCENE-GUIDED INTEGRATION OF TLS AND PHOTOGRAMMETRIC POINT CLOUDS FOR LANDSLIDE MONITORING
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SENSOR- AND SCENE-GUIDED INTEGRATION OF TLS AND PHOTOGRAMMETRIC POINT CLOUDS FOR LANDSLIDE MONITORING

机译:传感器和场景引导的TLS和照相点云的集成,用于滑坡监测

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Terrestrial and airborne 3D imaging sensors are well-suited data acquisition systems for the area-wide monitoring of landslide activity. State-of-the-art surveying techniques, such as terrestrial laser scanning (TLS) and photogrammetry based on unmanned aerial vehicle (UAV) imagery or terrestrial acquisitions have advantages and limitations associated with their individual measurement principles. In this study we present an integration approach for 3D point clouds derived from these techniques, aiming at improving the topographic representation of landslide features while enabling a more accurate assessment of landslide-induced changes. Four expert-based rules involving local morphometric features computed from eigenvectors, elevation and the agreement of the individual point clouds, are used to choose within voxels of selectable size which sensor’s data to keep. Based on the integrated point clouds, digital surface models and shaded reliefs are computed. Using an image correlation technique, displacement vectors are finally derived from the multi-temporal shaded reliefs. All results show comparable patterns of landslide movement rates and directions. However, depending on the applied integration rule, differences in spatial coverage and correlation strength emerge.
机译:地面和机载3D成像传感器是用于滑坡活动区域监测的非常适合的数据采集系统。最新的测量技术,例如基于无人飞行器(UAV)图像或地面采集的地面激光扫描(TLS)和摄影测量法,其各自的测量原理具有优势和局限性。在这项研究中,我们提出了一种基于这些技术的3D点云的集成方法,旨在改善滑坡特征的地形表示,同时能够更准确地评估滑坡引起的变化。使用四个基于专家的规则,这些规则涉及从特征向量,高程和各个点云的一致性计算出的局部形态特征,用于在可选择大小的体素中选择要保留的传感器数据。根据积分的点云,计算数字表面模型和阴影浮雕。使用图像相关技术,最终从多时间阴影浮雕中得出位移矢量。所有结果都表明滑坡运动速率和方向具有可比性。但是,根据所应用的积分规则,会出现空间覆盖率和相关强度的差异。

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