DocumentCode :
789331
Title :
Structure From Planar Motion
Author :
Li, Jian ; Chellappa, Rama
Author_Institution :
Center for Autom. Res., Maryland Univ.
Volume :
15
Issue :
11
fYear :
2006
Firstpage :
3466
Lastpage :
3477
Abstract :
Planar motion is arguably the most dominant type of motion in surveillance videos. The constraints on motion lead to a simplified factorization method for structure from planar motion when using a stationary perspective camera. Compared with methods for general motion , our approach has two major advantages: a measurement matrix that fully exploits the motion constraints is formed such that the new measurement matrix has a rank of at most 3, instead of 4; the measurement matrix needs similar scalings, but the estimation of fundamental matrices or epipoles is not needed. Experimental results show that the algorithm is accurate and fairly robust to noise and inaccurate calibration. As the new measurement matrix is a nonlinear function of the observed variables, a different method is introduced to deal with the directional uncertainty in the observed variables. Differences and the dual relationship between planar motion and planar object are also clarified. Based on our method, a fully automated vehicle reconstruction system has been designed
Keywords :
image motion analysis; matrix algebra; road vehicles; surveillance; video signal processing; directional uncertainty; measurement matrix; planar motion; stationary perspective camera; surveillance videos; vehicle reconstruction system; Cameras; Image reconstruction; Matrix decomposition; Motion estimation; Motion measurement; Noise robustness; Shape; Surveillance; Transmission line matrix methods; Videos; 3-D vehicle model; Duality between shape and motion; duality between space and time; factorization; factorization with uncertainty; ground plane constraints; planar motion; structure from motion (SfM);
fLanguage :
English
Journal_Title :
Image Processing, IEEE Transactions on
Publisher :
ieee
ISSN :
1057-7149
Type :
jour
DOI :
10.1109/TIP.2006.881943
Filename :
1709990
Link To Document :
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