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3D reconstruction of laser projective point with projection invariant generated from five points on 2D target

机译:3D激光投影点重建与2D目标的五点生成的投影不变

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摘要

Abstract Vision measurement on the basis of structured light plays a significant role in the optical inspection research. The 2D target fixed with a line laser projector is designed to realize the transformations among the world coordinate system, the camera coordinate system and the image coordinate system. The laser projective point and five non-collinear points that are randomly selected from the target are adopted to construct a projection invariant. The closed form solutions of the 3D laser points are solved by the homogeneous linear equations generated from the projection invariants. The optimization function is created by the parameterized re-projection errors of the laser points and the target points in the image coordinate system. Furthermore, the nonlinear optimization solutions of the world coordinates of the projection points, the camera parameters and the lens distortion coefficients are contributed by minimizing the optimization function. The accuracy of the 3D reconstruction is evaluated by comparing the displacements of the reconstructed laser points with the actual displacements. The effects of the image quantity, the lens distortion and the noises are investigated in the experiments, which demonstrate that the reconstruction approach is effective to contribute the accurate test in the measurement system.
机译:摘要在结构光的基础上的摘要测量在光学检测研究中起着重要作用。用线激光投影仪固定的2D目标旨在实现世界坐标系,相机坐标系和图像坐标系之间的变换。采用激光投影点和五个非共线点从目标中随机选择,以构建投影不变。 3D激光点的闭合形式解决方案由从投影不变的均匀线性方程求解。优化函数由激光点的参数化重新投影误差和图像坐标系中的目标点创建。此外,通过最小化优化功能来贡献的投影点的世界坐标的非线性优化解决方案,通过最小化优化函数来贡献。通过将重建激光点与实际位移的位移进行比较来评估3D重建的准确性。在实验中研究了图像量,镜片变形和噪声的影响,这表明重建方法有效地在测量系统中提供准确测试。

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