DocumentCode
1472873
Title
A Taxonomy and Analysis of Camera Calibration Methods for Traffic Monitoring Applications
Author
Kanhere, Neeraj K. ; Birchfield, Stanley T.
Author_Institution
Clemson Univ., Clemson, SC, USA
Volume
11
Issue
2
fYear
2010
fDate
6/1/2010 12:00:00 AM
Firstpage
441
Lastpage
452
Abstract
Many vision-based automatic traffic-monitoring systems require a calibrated camera to compute the speeds and length-based classifications of tracked vehicles. A number of techniques, both manual and automatic, have been proposed for performing such calibration, but no study has yet focused on evaluating the relative strengths of these different alternatives. We present a taxonomy for roadside camera calibration that not only encompasses the existing methods (VVW, VWH, and VWL) but also includes several novel methods (VVH, VVL, VLH, VVD, VWD, and VHD). We also introduce an overconstrained (OC) approach that takes into account all the available measurements, resulting in reduced error and overcoming the inherent ambiguity in single-vanishing-point solutions. This important but oft-neglected ambiguity has not received the attention that it deserves; we analyze it and propose several ways of overcoming it. Our analysis includes the relative tradeoffs between two-vanishing-point solutions, single-vanishing-point solutions, and solutions that require the distance to the road to be known. The various methods are compared using simulations and experiments with real images, showing that methods that use a known length generally outperform the others in terms of error and that the OC method reduces errors even further.
Keywords
calibration; cameras; image processing; image sensors; monitoring; road traffic; road vehicles; taxation; traffic engineering computing; camera calibration analysis; length-based classifications; oft-neglected ambiguity; roadside camera calibration; single vanishing-point solutions; taxonomy; traffic monitoring applications; two-vanishing-point solutions; vehicle tracking; vision based automatic traffic monitoring systems; Camera calibration; traffic monitoring; vehicle tracking; video-based sensing;
fLanguage
English
Journal_Title
Intelligent Transportation Systems, IEEE Transactions on
Publisher
ieee
ISSN
1524-9050
Type
jour
DOI
10.1109/TITS.2010.2045500
Filename
5447791
Link To Document