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ANALYSIS OF LOW-LIGHT AND NIGHT-TIME STEREO-PAIR IMAGES FOR PHOTOGRAMMETRIC RECONSTRUCTION

机译:摄影测量重建的低光和夜间立体对图像分析

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摘要

Rockfalls and rockslides represent a significant risk to human lives and infrastructures because of the high levels of energy involved in the phenomena. Generally, these events occur in accordance to specific environmental conditions, such as temperature variations between day and night, that can contribute to the triggering of structural instabilities in the rock-wall and the detachment of blocks and debris. The monitoring and the geostructural characterization of the wall are required for reducing the potential hazard and to improve the management of the risk at the bottom of the slopes affected by such phenomena. In this context, close range photogrammetry is largely used for the monitoring of high-mountain terrains and rock walls in mine sites allowing for periodic survey of rockfalls and wall movements. This work focuses on the analysis of low-light and night-time images of a fixed-base stereo pair photogrammetry system. The aim is to study the reliability of the images acquired over the night to produce digital surface models (DSMs) for change detection. The images are captured by a high-sensitivity DLSR camera using various settings accounting for different values of ISO, aperture and time of exposure. For each acquisition, the DSM is compared to a photogrammetric reference model produced by images captured in optimal illumination conditions. Results show that, with high level of ISO and maintaining the same grade of aperture, extending the exposure time improves the quality of the point clouds in terms of completeness and accuracy of the photogrammetric models.
机译:由于现象中涉及高的能量,落地和岩石滑动率代表了人类生活和基础设施的重大风险。通常,这些事件根据特定的环境条件发生,例如白天和夜间的温度变化,这可以有助于触发岩壁中的结构稳定性和块和碎屑的脱离。需要墙壁的监测和地质结构表征来减少潜在的危害,并改善受此类现象影响的斜坡底部的风险管理。在这种情况下,近距离摄影测量主要用于监测矿山的高山地地形和岩壁,允许对岩石和墙运动进行定期调查。这项工作侧重于分析固定基地立体对摄影测量系统的低光和夜间图像。目的是研究在夜间获得的图像的可靠性,以产生用于改变检测的数字表面模型(DSM)。使用各种设置占ISO,孔径和曝光时间的不同值,通过高灵敏度DLSR相机捕获图像。对于每个获取,将DSM与通过在最佳照明条件中捕获的图像产生的摄影测量模型进行比较。结果表明,具有高水平的ISO并保持相同等级的光圈,延长曝光时间在摄影测量模型的完整性和准确性方面提高了点云的质量。

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