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Three-Dimensional Reconstruction of Tunnel Face Based on Multiple Images

机译:基于多个图像的隧道面三维重建

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The current geological sketch in tunnel engineering is mainly based on sketches of workers. However, geological sketch drawn by workers always offers fundamental data purely due to its drawing mode. A novel drawing method for geological sketch has been introduced using multiview photos in this process. The images of tunnel faces are taken from multiple angles, and every two pictures have overlaps. By measuring the distance between the camera and the tunnel face using a laser range finder, the photographic scale of each photo can be confirmed. SpeededUp Robust Features (SURF) is a good practice for detecting feature points, and the sparse point cloud is reconstructed from multiview photos by structure from motion (SFM). However, the sparse point cloud is not suitable for analysis for structural planes due to its sparsity. Therefore, patch-based multiview stereo (PMVS) is used to reconstruct dense point cloud from the sparse point cloud. After 3D reconstruction, the details of the tunnel face are recorded. The proposed technique was applied to multiview photos acquired in the Xiaosanxia railway tunnel and Fengjie tunnel in Chongqing, China. In order to record the geological conditions of the tunnel face quickly and accurately, Chengdu Tianyou Tunnelkey has developed a set of software and hardware integration system called CameraPad. Besides, CameraPad was used to collect the multiview photos of the tunnel face in the No. 1 Xinan railway tunnel in Jilin, China. By comparing with traditional and existing methods, the proposed method offers a more reductive model for geological conditions of the tunnel face.
机译:隧道工程中当前的地质素描主要基于工人的草图。然而,工人绘制的地质素描总是由于其绘图模式而纯粹提供基本数据。在该过程中使用多视图照片引入了一种新颖的地质草图的绘图方法。隧道面的图像从多个角度取出,每两张图片都具有重叠。通过使用激光测距仪测量相机和隧道面之间的距离,可以确认每个照片的摄影尺度。 Speededup鲁棒特征(冲浪)是检测特征点的良好做法,并且通过从运动(SFM)的结构从多视图照片重建稀疏点云。然而,由于其稀疏性,稀疏点云不适合分析结构平面。因此,基于补丁的多视图立体声(PMV)用于从稀疏点云重建密度点云。在3D重建之后,记录隧道面的细节。该拟议的技术应用于中国重庆奉佳隧道和中国重庆市奉杰隧道的多视图照片。为了快速准确地记录隧道面的地质条件,成都天佑隧道开发了一套名为Camerapad的软件和硬件集成系统。此外,Camerapad被用来收集中国吉林岛1号新安铁路隧道隧道面的多视图照片。通过与传统和现有方法进行比较,该方法为隧道面的地质条件提供了更加冗余的模型。

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