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Investigating the accuracy of 3D models created using SfM

机译:调查使用SFM创建的3D模型的准确性

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Technological innovations in photogrammetry have progressed over time, and civil engineers in Japan have employed this technology for earthworks. Photogrammetry has also been introduced to building construction work, and in particular, it is used in the surveying of buildings and the production of architectural drawings in repair work. With this motivation, the authors evaluate the accuracy of Three-dimensional (3D) model extraction using structure from motion (SfM) photogrammetry. In particular, the authors evaluate the accuracy of the height measurements (Z axis). The authors survey the accuracy of a 3D model using a cube with a side length of 5 cm. Our surveying procedure consists of the following four steps: 1. Place the cube on a turntable, rotate the turntable in 5° increment, and capture 72 photographs. 2. Select 12 photographs considering six control points. Edit the control points given their 3D positions in each of the 12 photographs. 3. Extract the 3D model using SfM software. 4. Import the 3D model and measure the height of the cube at 121 points. In this paper, we discuss the differences in the measurement accuracy resulting from the differences in the camera position.
机译:摄影测量技术创新随着时间的推移,日本的土木工程师已经为土方工程师雇用了这项技术。摄影测量还被引入建筑工程,特别是在修理工作中的建筑和建筑图纸的调查中使用。通过这种动机,作者评估了使用来自运动(SFM)摄影测量的结构的三维(3D)模型提取的准确性。特别是,作者评估了高度测量(Z轴)的准确性。作者使用侧面长度为5厘米的立方体来调查3D模型的准确性。我们的测量程序包括以下四个步骤:1。将立方体放在转盘上,旋转5°增量的转盘,并捕获72张照片。 2.考虑六个控制点选择12张照片。在12张照片中的每一个中编辑控制点。 3.使用SFM软件提取3D模型。 4.导入3D模型,并在121点测量立方体的高度。在本文中,我们讨论了摄像机位置差异导致的测量精度的差异。

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