loading...
Evaluation of Matching Metrics for Trajectory-Based Indexing and Retrieval of Video Clips
Breckenridge, Colorado January 05-January 07
DOI Bookmark: http://doi.ieeecomputersociety.org/10.1109/ACVMOT.2005.49Seventh IEEE Workshops on Application ...
 This Article 
 
PDF
HTML
 
 Share 
   
 Bibliographic References 
   
 Add to: 
 
Digg
Furl
Spurl
Blink
Simpy
Google
Del.icio.us
Y!MyWeb
 
 Search 
   
Shehzad Khalid, University of Manchester, UK
Andrew Naftel, University of Manchester, UK
This paper describes a comparative evaluation of three different similarity metrics for trajectory-based indexing and retrieval of video motion clips. The motion paths are generated using a low-level tracking algorithm incorporating first-order Kalman filter and colour appearance models.
For simple motion paths, a RANSAC approach can be used to generate smooth trajectories for each tracked object described by low-order polynomials. This allows us to obtain a representative trajectory model even in the case of high numbers of outlier points caused by target mis-detection and multiple occlusions.
We show that more complex trajectories including stop-start motions, can be modelled as time series using high order Chebyshev polynomials. Similarity metrics based on coefficient descriptors are shown to have comparable performance to a Hausdorff distance measure when retrieving trajectory-based motion clips but at substantially reduced computational cost. Experimental results are presented to illustrate the comparative performance of different matching metrics on real-world trajectory data collected by a retail store CCTV installation.
Index Terms:
motion trajectory, video indexing and retrieval, object tracking, similarity metric
Citation:
Shehzad Khalid, Andrew Naftel, "Evaluation of Matching Metrics for Trajectory-Based Indexing and Retrieval of Video Clips," wacv-motion, vol. 1, pp.242-249, Seventh IEEE Workshops on Application of Computer Vision (WACV/MOTION'05) - Volume 1, 2005
Usage of this product signifies your acceptance of the Terms of Use.