A versatile camera calibration technique for high-accuracy 3D machine vision metrology using off-the-shelf TV cameras and lenses

R. Tsai
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引用次数: 6604

Abstract

A new technique for three-dimensional (3D) camera calibration for machine vision metrology using off-the-shelf TV cameras and lenses is described. The two-stage technique is aimed at efficient computation of camera external position and orientation relative to object reference coordinate system as well as the effective focal length, radial lens distortion, and image scanning parameters. The two-stage technique has advantage in terms of accuracy, speed, and versatility over existing state of the art. A critical review of the state of the art is given in the beginning. A theoretical framework is established, supported by comprehensive proof in five appendixes, and may pave the way for future research on 3D robotics vision. Test results using real data are described. Both accuracy and speed are reported. The experimental results are analyzed and compared with theoretical prediction. Recent effort indicates that with slight modification, the two-stage calibration can be done in real time.
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一种多功能相机校准技术,用于高精度3D机器视觉计量,使用现成的电视摄像机和镜头
介绍了一种利用现成的电视摄像机和镜头进行机器视觉测量的三维摄像机标定的新技术。两阶段技术的目标是有效计算相机相对于目标参考坐标系的外部位置和方向,以及有效焦距、径向透镜畸变和图像扫描参数。与现有技术相比,两阶段技术在准确性、速度和多功能性方面具有优势。一开始就对目前的技术状况进行了批判性的回顾。建立了一个理论框架,并在五个附录中进行了全面的论证,为未来3D机器人视觉的研究铺平了道路。描述了使用实际数据的测试结果。精度和速度都有报道。对实验结果进行了分析,并与理论预测进行了比较。最近的研究表明,只需稍加修改,就可以实时完成两阶段校准。
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