DocumentCode
3138882
Title
A fast subspace algorithm for recovering rigid motion
Author
Jepson, Allan D. ; Heeger, David J.
Author_Institution
Toronto Univ., Ont., Canada
fYear
1991
fDate
7-9 Oct 1991
Firstpage
124
Lastpage
131
Abstract
The image motion field for an observer moving through a static environment depends on the observer´s translational and rotational velocities along with the distances to surface points. Given such a motion field as input the authors present a new algorithm for computing the observer´s motion and the depth structure of the scene. The approach is a further development of sub-space methods. This class of methods involve splitting the equations describing the motion field into separate equations for the observer´s translational direction, the rotational velocity and the relative depths. The resulting equations can then be solved successively, beginning with the equations for the translational direction. The authors show how this first step can be simplified considerably. The consequence is that the observer´s velocity and the relative depths to points in the scene can all be recovered by successively solving three linear problems
Keywords
motion estimation; depth structure; egomotion recovery; fast subspace algorithm; image motion field; moving observer; relative depths; rigid motion; rotational velocities; rotational velocity; static environment; surface points; translational velocities; Angular velocity; Cameras; Equations; Fluid flow measurement; Image motion analysis; Layout; Motion analysis; Motion measurement; Sampling methods; Vectors;
fLanguage
English
Publisher
ieee
Conference_Titel
Visual Motion, 1991., Proceedings of the IEEE Workshop on
Conference_Location
Princeton, NJ
Print_ISBN
0-8186-2153-2
Type
conf
DOI
10.1109/WVM.1991.212779
Filename
212779
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