Title :
Circular motion geometry using minimal data
Author :
Jiang, Guang ; Tsui, Hung-Tat ; Quan, Long
fDate :
6/1/2004 12:00:00 AM
Abstract :
Circular motion or single axis motion is widely used in computer vision and graphics for 3D model acquisition. This paper describes a new and simple method for recovering the geometry of uncalibrated circular motion from a minimal set of only two points in four images. This problem has been previously solved using nonminimal data either by computing the fundamental matrix and trifocal tensor in three images or by fitting conics to tracked points in five or more images. It is first established that two sets of tracked points in different images under circular motion for two distinct space points are related by a homography. Then, we compute a plane homography from a minimal two points in four images. After that, we show that the unique pair of complex conjugate eigenvectors of this homography are the image of the circular points of the parallel planes of the circular motion. Subsequently, all other motion and structure parameters are computed from this homography in a straightforward manner. The experiments on real image sequences demonstrate the simplicity, accuracy, and robustness of the new method.
Keywords :
computational geometry; computer graphics; computer vision; eigenvalues and eigenfunctions; image reconstruction; image sequences; matrix algebra; motion estimation; tensors; 3D model acquisition; circular motion geometry; complex conjugate; computer vision; eigenvectors; fundamental matrix; graphics; homography; image reconstruction; image sequences; minimal data; parallel planes; single axis motion; three-dimensional model acquisition; trifocal tensor; Cameras; Computer graphics; Computer vision; Geometry; Image sequences; Motion analysis; Robustness; Surface reconstruction; Tensile stress; Tracking; Structure from motion; circular motion; minimal data; single axis motion.; turntable; vision geometry; Algorithms; Artificial Intelligence; Databases, Factual; Image Enhancement; Image Interpretation, Computer-Assisted; Information Storage and Retrieval; Pattern Recognition, Automated; Rotation;
Journal_Title :
Pattern Analysis and Machine Intelligence, IEEE Transactions on
DOI :
10.1109/TPAMI.2004.4