Geometry-Based Camera Calibration Using Closed-Form Solution of Principal Line

Jen-Hui Chuang*, Chih Hui Ho, Ardian Umam, Hsin Yi Chen, Jenq Neng Hwang, Tai An Chen

*此作品的通信作者

研究成果: Article同行評審

31 引文 斯高帕斯(Scopus)

摘要

Camera calibration is a crucial prerequisite in many applications of computer vision. In this paper, a new geometry-based camera calibration technique is proposed, which resolves two main issues associated with the widely used Zhang's method: (i) the lack of guidelines to avoid outliers in the computation and (ii) the assumption of fixed camera focal length. The proposed approach is based on the closed-form solution of principal lines with their intersection being the principal point while each principal line can concisely represent relative orientation/position (up to one degree of freedom for both) between a special pair of coordinate systems of image plane and calibration pattern. With such analytically tractable image features, computations associated with the calibration are greatly simplified, while the guidelines in (i) can be established intuitively. Experimental results for synthetic and real data show that the proposed approach does compare favorably with Zhang's method, in terms of correctness, robustness, and flexibility, and addresses issues (i) and (ii) satisfactorily.

原文English
文章編號9318550
頁(從 - 到)2599-2610
頁數12
期刊IEEE Transactions on Image Processing
30
DOIs
出版狀態Published - 1月 2021

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