DocumentCode
1489425
Title
Model-based temporal object verification using video
Author
Li, Baoxin ; Chellappa, Rama ; Zheng, Qinfen ; Der, Sandor Z.
Author_Institution
Sharp Labs. of America, Camas, WA, USA
Volume
10
Issue
6
fYear
2001
fDate
6/1/2001 12:00:00 AM
Firstpage
897
Lastpage
908
Abstract
An approach to model-based dynamic object verification and identification using video is proposed. From image sequences containing the moving object, we compute its motion trajectory. Then we estimate its three-dimensional (3-D) pose at each time step. Pose estimation is formulated as a search problem, with the search space constrained by the motion trajectory information of the moving object and assumptions about the scene structure. A generalized Hausdorff (1962) metric, which is more robust to noise and allows a confidence interpretation, is suggested for the matching procedure used for pose estimation as well as the identification and verification problem. The pose evolution curves are used to assist in the acceptance or rejection of an object hypothesis. The models are acquired from real image sequences of the objects. Edge maps are extracted and used for matching. Results are presented for both infrared and optical sequences containing moving objects involved in complex motions
Keywords
edge detection; feature extraction; image matching; image motion analysis; image sequences; object recognition; parameter estimation; video signal processing; 3D pose; IR sequences; confidence interpretation; edge maps extraction; generalized Hausdorff metric; image sequences; matching procedure; model-based dynamic object identification; model-based dynamic object verification; model-based temporal object verification; motion trajectory; motion trajectory information; moving objects; object hypothesis; object recognition; optical sequences; pose estimation; pose evolution curves; real image sequences; scene structure; video processing; Image databases; Image sequences; Infrared image sensors; Laboratories; Layout; Motion estimation; Object recognition; Search problems; Shape; Two dimensional displays;
fLanguage
English
Journal_Title
Image Processing, IEEE Transactions on
Publisher
ieee
ISSN
1057-7149
Type
jour
DOI
10.1109/83.923286
Filename
923286
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