期刊文献+

Non-Metric CCD Camera Calibration Algorithm in a Digital Photogrammetry System 被引量:4

Non-Metric CCD Camera Calibration Algorithm in a Digital Photogrammetry System
在线阅读 下载PDF
导出
摘要 Camera calibration is a critical process in photogrammetry and a necessary step to acquire 3D information from a 2D image. In this paper, a flexible approach for CCD camera calibration using 2D direct linear transformation (DLT) and bundle adjustment is proposed. The proposed approach assumes that the camera interior orientation elements are known, and addresses a new closed form solution in planar object space based on homogenous coordinate representation and matrix factorization. Homogeneous coordinate representation offers a direct matrix correspondence between the parameters of the 2D DLT and the collinearity equation. The matrix factorization starts by recovering the elements of the rotation matrix and then solving for the camera position with the collinearity equation. Camera calibration with high precision is addressed by bundle adjustment using the initial values of the camera orientation elements. The results show that the calibration precision of principal point and focal length is about 0.2 and 0.3 pixels respectivelv, which can meet the requirements of close-range photogrammetry with high accuracy. Camera calibration is a critical process in photogrammetry and a necessary step to acquire 3D information from a 2D image. In this paper, a flexible approach for CCD camera calibration using 2D direct linear transformation (DLT) and bundle adjustment is proposed. The proposed approach assumes that the camera interior orientation elements are known, and addresses a new closed form solution in planar object space based on homogenous coordinate represen- tation and matrix factorization. Homogeneous coordinate representation offers a direct matrix correspondence between the parameters of the 2D DLT and the collinearity equation. The matrix factorization starts by recovering the elements of the rotation matrix and then solving for the camera position with the collinearity equation. Camera calibration with high precision is addressed by bundle adjustment using the initial values of the camera orientation elements. The results show that the calibration precision of principal point and focal length is about 0.2 and 0.3 pixels respec- tively, which can meet the requirements of close-range photogrammetry with high accuracy.
出处 《Journal of China University of Mining and Technology》 EI 2006年第2期119-122,共4页 中国矿业大学学报(英文版)
基金 Project 2005A030 supported by the Youth Science and Research Foundation from China University of Mining & Technology
关键词 direct linear transformation collinearity equation bundle adjustment camera calibration Hough transformation 电荷耦合器件 霍夫变换 摄影测量 共线性方程 束调节 摄像机标定
作者简介 Corresponding author. Tel: +86 516-82175045; E-mail address: huachao-yang@163.com
  • 相关文献

参考文献2

二级参考文献17

  • 1Ma S,IEEE Trans Robotics Automation,1996年,12卷,114页
  • 2Shashua A,IEEE Trans PAMI,1995年,17卷,779页
  • 3Wei G,IEEE Trans PAMI,1994年,16卷,5期
  • 4Luong Q T,INRIA Research Report,1993年,1894期
  • 5Weng J,IEEE Trans PAMI,1992年,14卷,10期,965页
  • 6Wei G,Proc.CVPR’91.,1991年,133页
  • 7Luh J Y,IEEE Trans PAMI,1985年,7卷,1期
  • 8Hall E L,Proc. IEEE Workshop on Industrial Application of Machine Vision,1982年
  • 9Wong K W,Proc.13th Congressof the Int.Society for Photogrammetry,1976年,1355页
  • 10Faig W,Remote Sensing,1975年,41卷,12期,1479页

共引文献430

同被引文献33

引证文献4

二级引证文献34

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部