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Reconstruction of Cylindrical Surfaces Using Digital Image Correlation

机译:使用数字图像关联重建圆柱表面

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摘要

A technique for the reconstruction of cylindrical surfaces using optical images with an extension of least squares matching is presented. This technique is based on stereo-image acquisition of a cylindrical object, and it involves displacing the camera following the object length. The basic concept behind this technique is that variations in the camera viewpoint over a cylindrical object produce perspective effects similar to a conic section in an image sequence. Such parallax changes are continuous and can be modelled by a second-order function, which is combined with an adaptive least squares matching (ALSM) for the 3D object reconstruction. Using this concept, a photogrammetric intersection with only two image patches can be used to model a cylindrical object with high accuracy. Experiments were conducted with a cylinder on a panel with coded targets to assess the 3D reconstruction accuracy. The accuracy assessment was based on a comparison between the estimated diameter and the diameter directly measured over the cylinder. The difference between the diameters indicated an accuracy of 1/10 mm, and the cylindrical surface was entirely reconstructed.
机译:提出了一种使用具有最小二乘匹配扩展的光学图像重建圆柱表面的技术。该技术基于获取圆柱形物体的立体图像,并且涉及按照物体长度移动相机。该技术背后的基本概念是,相机在圆柱物体上的视点变化会产生类似于图像序列中圆锥截面的透视效果。这样的视差变化是连续的,可以通过二阶函数建模,该函数与自适应最小二乘匹配(ALSM)结合用于3D对象重建。使用此概念,仅具有两个图像块的摄影相交可用于高精度建模圆柱对象。在带有编码目标的面板上的圆柱体上进行了实验,以评估3D重建的准确性。精度评估基于估算的直径与直接在圆柱体上测量的直径之间的比较。直径之间的差异表示精度为1/10 mm,圆柱表面已完全重建。

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