Title :
A generic approach to simultaneous tracking and verification in video
Author :
Li, Baoxin ; Chellappa, Rama
Author_Institution :
Sharp Labs. of America, Camas, WA, USA
fDate :
5/1/2002 12:00:00 AM
Abstract :
A generic approach to simultaneous tracking and verification in video data is presented. The approach is based on posterior density estimation using sequential Monte Carlo methods. Visual tracking, which is in essence a temporal correspondence problem, is solved through probability density propagation, with the density being defined over a proper state space characterizing the object configuration. Verification is realized through hypothesis testing using the estimated posterior density. In its most basic form, verification can be performed as follows. Given a measurement vector Z and two hypotheses H1 and H0, we first estimate posterior probabilities P(H0|Z) and P(H1|Z), and then choose the one with the larger posterior probability as the true hypothesis. Several applications of the approach are illustrated by experiments devised to evaluate its performance. The idea is first tested on synthetic data, and then experiments with real video sequences are presented, illustrating vehicle tracking and verification, human (face) tracking and verification, facial feature tracking, and image sequence stabilization.
Keywords :
Monte Carlo methods; face recognition; feature extraction; image sequences; probability; road vehicles; tracking; video signal processing; estimated posterior density; facial feature tracking; generic approach; human face tracking; human face verification; hypothesis testing; image sequence stabilization; measurement vector; object configuration; performance evaluation; posterior density estimation; probability density propagation; sequential Monte Carlo methods; state space; synthetic data; temporal correspondence problem; vehicle tracking; vehicle verification; video data; video sequences; video tracking; video verification; visual tracking; Face; Facial features; Humans; Image sequences; Laboratories; State-space methods; Testing; Vehicles; Video sequences; Voting;
Journal_Title :
Image Processing, IEEE Transactions on
DOI :
10.1109/TIP.2002.1006400