Title :
Gibbs likelihoods for Bayesian tracking
Author :
Roth, Stefan ; Sigal, Leonid ; Black, Michael J.
Author_Institution :
Dept. of Comput. Sci., Brown Univ., Providence, RI, USA
fDate :
27 June-2 July 2004
Abstract :
Bayesian methods for visual tracking model the likelihood of image measurements conditioned on a tracking hypothesis. Image measurements may, for example, correspond to various filter responses at multiple scales and orientations. Most tracking approaches exploit ad hoc likelihood models while those that exploit more rigorous, learned, models often make unrealistic assumptions about the underlying probabilistic model. Such assumptions cause problems for Bayesian inference when an unsound likelihood is combined with an a priori probability distribution. Errors in modeling the likelihood can lead to brittle tracking results, particularly when using non-parametric inference techniques such as particle filtering. We show how assumptions of conditional independence of filter responses are violated in common tracking scenarios, lead to incorrect likelihood models, and cause problems for Bayesian inference. We address the problem of modeling more principled likelihoods using Gibbs learning. The learned models are compared with naive Bayes methods which assume conditional independence of the filter responses. We show how these Gibbs models can be used as an effective image likelihood, and demonstrate them in the context of particle filter-based human tracking.
Keywords :
Bayes methods; filtering theory; image sampling; maximum likelihood estimation; nonparametric statistics; probability; tracking; Bayes methods; Bayesian inference; Bayesian methods; Bayesian tracking; Gibbs learning; Gibbs likelihoods; Gibbs models; adhoc likelihood models; conditional independence; filter response; image likelihood; image measurements; multiple scales; nonparametric inference; particle filter based human tracking; particle filtering theory; priori probability distribution; probabilistic model; tracking hypothesis; unsound likelihood; visual tracking model; Bayesian methods; Computer Society; Computer vision; Pattern recognition;
Conference_Titel :
Computer Vision and Pattern Recognition, 2004. CVPR 2004. Proceedings of the 2004 IEEE Computer Society Conference on
Print_ISBN :
0-7695-2158-4
DOI :
10.1109/CVPR.2004.1315125