Multi-camera calibration method based on a multi-plane stereo target.

IF 1.7 4区 工程技术 Q3 OPTICS
Jin Zhang, Jiang Zhu, Huaxia Deng, Zhiwen Chai, Mengchao Ma, Xiang Zhong
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引用次数: 21

Abstract

Machine vision techniques, including camera calibration methods, are of great importance for the development of vision-based measurements. However, in multi-camera calibration methods, rapidly constructing accurate geometric relationships among different coordinates is very difficult. Herein, we present a multi-camera calibration method capable of calibrating the intrinsic and extrinsic parameters of four cameras using only a single captured image per camera. Unlike Zhang's method, which relies on multiple captured images to calibrate the cameras, the method uses a multi-plane stereo target containing multiple fixed planes to which coded patterns are attached. This target greatly reduces the time required for calibration and improves calibration robustness. The proposed method was experimentally compared with traditional camera calibration. The problem affecting the calibration accuracy in single calibration of multiple cameras is that the feature points on the captured images produce occlusion or different degrees of blurring; in the calibration of multiple cameras multiple times, the error accumulation caused by the calibration of two adjacent cameras is solved. This demonstration of a multi-camera calibration method improves camera calibration and provides a new design philosophy, to the best of our knowledge, for machine vision and vision-based measurement.

基于多平面立体目标的多摄像机标定方法。
包括相机标定方法在内的机器视觉技术对基于视觉的测量技术的发展具有重要意义。然而,在多相机标定方法中,快速准确地构建不同坐标之间的几何关系是非常困难的。在此,我们提出了一种多相机校准方法,该方法能够仅使用每台相机捕获的单个图像来校准四个相机的内在和外在参数。与Zhang的方法不同的是,该方法依赖于多个捕获的图像来校准相机,而该方法使用了一个包含多个固定平面的多平面立体目标,其中附加了编码模式。该目标大大减少了校准所需的时间,提高了校准的鲁棒性。并与传统摄像机标定方法进行了实验比较。在多相机单次标定中,影响标定精度的问题是捕获图像上的特征点产生遮挡或不同程度的模糊;在对多台摄像机进行多次标定时,解决了相邻两台摄像机标定引起的误差累积问题。这个多相机校准方法的演示改进了相机校准,并提供了一种新的设计理念,据我们所知,为机器视觉和基于视觉的测量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Applied optics
Applied optics OPTICS-
CiteScore
3.70
自引率
15.80%
发文量
2081
审稿时长
3 months
期刊介绍: A highly regarded, premium quality must read for everyone in the optics field that offers applications-centered research in optics, photonics, imaging, and sensing. Topics germane to the journal include optical technology, lasers, photonics, environmental optics, and information processing.
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