International Journal of Computer Vision
Multiple view geometry in computer visiond
Multiple view geometry in computer visiond
Metric Rectification for Perspective Images of Planes
CVPR '98 Proceedings of the IEEE Computer Society Conference on Computer Vision and Pattern Recognition
Planar Conic Based Camera Calibration
ICPR '00 Proceedings of the International Conference on Pattern Recognition - Volume 1
Planar Metric Rectification by Algebraically Estimating The Image of the Absolute Conic
ICPR '04 Proceedings of the Pattern Recognition, 17th International Conference on (ICPR'04) Volume 4 - Volume 04
IEEE Transactions on Pattern Analysis and Machine Intelligence
Detection of Concentric Circles for Camera Calibration
ICCV '05 Proceedings of the Tenth IEEE International Conference on Computer Vision (ICCV'05) Volume 1 - Volume 01
Camera Calibration Using Circle and Right Angles
ICPR '06 Proceedings of the 18th International Conference on Pattern Recognition - Volume 01
Plane Rectification Using a Circle and Points from a Single View
ICPR '06 Proceedings of the 18th International Conference on Pattern Recognition - Volume 02
The application of vision algorithms to visual effects production
ACCV'10 Proceedings of the 10th Asian conference on Computer vision - Volume Part I
Repetition Maximization based Texture Rectification
Computer Graphics Forum
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Metric rectification has important applications to topics such as single-view metrology, camera calibration, optical character recognition and texture extraction or synthesis. This paper proposes a method for estimating the rectification homography of a world plane that pertains to a single view containing the images of at least two circles in general position. The method does not presuppose that the circles radii, the camera's intrinsics or the plane's vanishing line are known and can simultaneously accommodate multiple circles. Comparative experimental results demonstrate the approach's efficacy.