智能手机杆摄影测量在二阶悬崖表面变形研究中的精度评估

M. Eboigbe, D. Kidner
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引用次数: 2

摘要

摘要海岸悬崖几乎是一个垂直的细长结构,具有波浪切割的缺口和山体滑坡。悬崖是一种地质构造,在构成的构造之间有着几乎不可预测和不可阻挡的分离。由于健康、安全、环境和军事方面的限制,对无人机的使用有更多的规定和限制。购买混合无人机和地面激光扫描仪(TLS)也存在便携性和高成本的问题。这使得对海岸悬崖的常规监测失效。本研究开发了一种快速、低成本、精确的数字摄影测量方法,以杆子为平台,以手机为传感器,实现对悬崖的连续监测。最实用的垂直相机角度、图像重叠、测量到悬崖的距离以及测量的真实时间范围都是根据基本测量原理确定的。无论是否使用全球导航卫星系统(GNSS),都可以生成精确的几何相关点云。自标定数码相机在不使用GNSS控制点的情况下,各点云上各点的“对中与面偏差”标准差为北±0.05 m,东±0.12 m。在GNSS控制下,XYZ坐标的最大偏差为±5厘米。执行的变更分析确定了所有点云中的切割、填充区域和威胁段。所开发的摄影测量技术非常便宜、简单、可靠,只需最少的劳动力。结果表明,该方法适用于二阶悬崖变形研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ASSESSMENT OF THE PRECISION OF A SMART-PHONE POLE PHOTOGRAMMETRY FOR A SECOND-ORDER CLIFF SURFACE DEFORMATION STUDIES
Abstract. Coastal cliff is almost a vertical elongated structure with a wave-cut notch and a landslip. Cliffs are geological formations with an almost unpredictable and unstoppable detachment between constitutes formations. Due to health, safety, environmental, and military restrictions, there are more regulations and restrictions on the use of drones. There are also the issues of portability and high cost for the purchase of hybrid drones and Terrestrial Laser Scanners (TLS). These negate the regular monitoring of the coastal cliff. This research develops a rapid, low-cost, and precise digital photogrammetry methodology for the continuous monitoring of the cliff by using the pole as the platform and a mobile phone as a sensor. The most practical vertical camera angle, image overlaps, survey distance to the cliff, and realistic time range for surveys are all determined from the basic surveying principles. Precise geometrically related point clouds generated are with or without the Global Navigation Satellite Systems (GNSS). The standard deviation for “alignment and surface deviation” at every point on each point cloud is ± 0.05 m in the Northing and ± 0.12 m on the Easting’s for the self-calibrated digital camera and without the use of GNSS control points. With the GNSS controls, the maximum deviation in the XYZ coordinates is ± 5 cm. Change analysis performed identifies areas of cut, fill, and the segment of threats in all point clouds. The photogrammetric technique developed is very cheap, simple, and reliable with minimum labor. The results obtained indicate the applicability of this methodology for second-order cliff Deformation study.
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