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用于具有有源相位目标和平面镜的大规模数字图像相关测量的立体相机校准。

Stereo-camera calibration for large-scale DIC measurements with active phase targets and planar mirrors.

作者信息

Genovese Katia, Chi Yuxi, Pan Bing

出版信息

Opt Express. 2019 Mar 18;27(6):9040-9053. doi: 10.1364/OE.27.009040.

Abstract

We propose an easy-to-implement yet accurate calibration method for large-scale 3D measurements that makes use of a regular-sized phase target and two planar mirrors. Being insensitive to severe defocus, the phase target is placed as to span a large depth within the field of view (FOV) of each camera for accurate intrinsic calibration. Extrinsic calibration is achieved by placing the phase target in the FOV of a short-range virtual stereo-system generated by the mirrors. Results from 3D shape and deformation measurements demonstrate that the proposed method is capable to operate within a working volume of 3 m × 2 m × 1.8 m with an error < 0.1% of the FOV thus opening to new possibilities for large-scale measurements in mechanical and civil engineering applications.

摘要

我们提出了一种易于实现且准确的大规模三维测量校准方法,该方法使用常规尺寸的相位目标和两个平面镜。相位目标对严重散焦不敏感,其放置方式是在每个相机的视场(FOV)内跨越较大深度,以进行精确的内参校准。通过将相位目标放置在由镜子生成的短程虚拟立体系统的视场中来实现外参校准。三维形状和变形测量结果表明,所提出的方法能够在3米×2米×1.8米的工作空间内运行,误差小于视场的0.1%,从而为机械和土木工程应用中的大规模测量开辟了新的可能性。

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