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Workflow: From photo-based 3-D reconstruction of remotely piloted aircraft images to a 3-D geological model

机译:工作流程:从基于照片的3-D重建远程驾驶飞机图像到3-D地质模型

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Geological field mapping is a vital first step in understanding geological processes. During the 20 th century, mapping was revolutionized through advances in remote sensing technology. With the recent availability of low-cost remotely piloted aircraft (RPA), field geologists now routinely carry out aerial imaging without the need to use satellite, helicopter, or airplane systems. RPA photographs are processed by photo-based three-dimensional (3-D) reconstruction software, which uses structure-from-motion and multi-view stereo algorithms to create an ultra-high-resolution, 3-D point cloud of a region or target outcrop. These point clouds are analyzed to extract the orientation of geological structures and strata, and are also used to create digital elevation models and photorealistic 3-D models. However, this technique has only recently been used for structural mapping. Here, we outline a workflow starting with RPA data acquisition, followed by photo-based 3-D reconstruction, and ending with a 3-D geological model. The Jabal Hafit anticline in the United Arab Emirates was selected to demonstrate this workflow. At this anticline, outcrop exposure is excellent and the terrain is challenging to navigate due to areas of high relief. This makes for an ideal RPA mapping site and provides a good indication of how practical this method may be for the field geologist. Results confirm that RPA photo-based 3-D reconstruction mapping is an accurate and cost-efficient remote sensing method for geological mapping.
机译:地质场测绘是理解地质过程的重要第一步。在20世纪,映射通过遥感技术的进步而彻底改变。随着最近的低成本远程飞机(RPA)的可用性,现场地质学家现在经常开展空中成像,无需使用卫星,直升机或飞机系统。 RPA照片由基于照片的三维(3-D)重建软件处理,该软件使用结构 - 来自运动和多视图立体声算法来创建区域的超高分辨率,3-D点云或目标露头。分析这些点云以提取地质结构和地层的方向,也用于创建数字高度模型和光电型3-D模型。然而,该技术最近仅用于结构映射。在这里,我们概述了以RPA数据采集开始的工作流程,然后是基于照片的3-D重建,并以三维地质模型结束。选中阿拉伯联合酋长国的Jabal Hafit Intalline展示了这个工作流程。在这条束缚,露出曝光是优秀的,由于高浮雕的区域,地形挑战。这使得理想的RPA映射网站提供了良好的指示,这些方法如何用于现场地质学家。结果证实,基于RPA的3-D重建映射是一种准确且具有成本高效的地质映射的遥感方法。

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