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A method based on structure-from-motion photogrammetry to generate sub-millimetre-resolution digital elevation models for investigating rock breakdown features

机译:一种基于运动的摄影测量法生成亚毫米分辨率数字高程模型以研究岩石破裂特征的方法

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We have generated sub-millimetre-resolution DEMs of weathered rock surfaces using SfM photogrammetry techniques. We apply a close-range method based on structure-from-motion (SfM) photogrammetry in the field and use it to generate high-resolution topographic data for weathered boulders and bedrock. The method was pilot tested on extensively weathered Triassic Moenkopi sandstone outcrops near Meteor Crater in Arizona. Images were taken in the field using a consumer-grade DSLR camera and were processed in commercially available software to build dense point clouds. The point clouds were registered to a local 3-D coordinate system ( x , y , z ), which was developed using a specially designed triangle-coded control target and then exported as digital elevation models (DEMs). The accuracy of the DEMs was validated under controlled experimental conditions. A number of checkpoints were used to calculate errors. We also evaluated the effects of image and camera parameters on the accuracy of our DEMs. We report a horizontal error of 0.5?mm and vertical error of 0.3?mm in our experiments. Our approach provides a low-cost method for obtaining very high-resolution topographic data on weathered rock surfaces (area 2/sup ). The results from our case study confirm the efficacy of the method at this scale and show that the data acquisition equipment is sufficiently robust and portable. This is particularly important for field conditions in remote locations or steep terrain where portable and efficient methods are required.
机译:我们已经使用SfM摄影测量技术生成了风化岩石表面的亚毫米级分辨率DEM。我们在野外应用基于运动结构(SfM)摄影测量的近距离方法,并将其用于生成风化巨石和基岩的高分辨率地形数据。该方法在亚利桑那州流星陨石坑附近的广泛风化的三叠纪Moenkopi砂岩露头上进行了试验测试。图像是使用消费级DSLR相机在野外拍摄的,并在可商购的软件中进行处理以构建密集点云。点云已注册到本地3-D坐标系(x,y,z),该坐标系是使用特殊设计的三角编码控制目标开发的,然后导出为数字高程模型(DEM)。在受控的实验条件下验证了DEM的准确性。许多检查点用于计算错误。我们还评估了图像和相机参数对我们DEM准确性的影响。我们在实验中报告的水平误差为0.5?mm,垂直误差为0.3?mm。我们的方法提供了一种低成本方法,用于获取风化岩石表面(区域2 )上非常高分辨率的地形数据。我们的案例研究结果证实了该方法在此规模上的有效性,并表明数据采集设备足够强大且便携。这对于需要便携式和高效方法的偏远地区或陡峭地形的野外条件尤为重要。

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