DocumentCode
84529
Title
Fully Automatic Roadside Camera Calibration for Traffic Surveillance
Author
Dubska, Marketa ; Herout, Adam ; Juranek, Roman ; Sochor, Jakub
Author_Institution
Graph@FIT, Brno Univ. of Technol., Brno, Czech Republic
Volume
16
Issue
3
fYear
2015
fDate
Jun-15
Firstpage
1162
Lastpage
1171
Abstract
This paper deals with automatic calibration of roadside surveillance cameras. We focus on parameters necessary for measurements in traffic-surveillance applications. Contrary to the existing solutions, our approach requires no a priori knowledge, and it works with a very wide variety of road settings (number of lanes, occlusion, quality of ground marking), as well as with practically unlimited viewing angles. The main contribution is that our solution works fully automatically-without any percamera or per-video manual settings or input whatsoever-and it is computationally inexpensive. Our approach uses tracking of local feature points and analyzes the trajectories in a manner based on cascaded Hough transform and parallel coordinates. An important assumption for the vehicle movement is that at least a part of the vehicle motion is approximately straight-we discuss the impact of this assumption on the applicability of our approach and show experimentally that this assumption does not limit the usability of our approach severely. We efficiently and robustly detect vanishing points, which define the ground plane and vehicle movement, except for the scene scale. Our algorithm also computes parameters for radial distortion compensation. Experiments show that the obtained camera parameters allow for measurements of relative lengths (and potentially speed) with ~2% mean accuracy. The processing is performed easily in real time, and typically, a 2-min-long video is sufficient for stable calibration.
Keywords
Hough transforms; calibration; cameras; computerised instrumentation; roads; surveillance; traffic; vehicles; cascaded Hough transform; fully automatic roadside camera calibration; local feature points; parallel coordinates; radial distortion compensation; traffic surveillance; vehicle motion; vehicle movement; Calibration; Cameras; Diamonds; Roads; Tracking; Transforms; Vehicles; Camera calibration; Hough transform; PClines; camera distortion correction; camera surveillance; diamond space; ground plane estimation; orthogonal vanishing points; speed estimation; vanishing points (VPs);
fLanguage
English
Journal_Title
Intelligent Transportation Systems, IEEE Transactions on
Publisher
ieee
ISSN
1524-9050
Type
jour
DOI
10.1109/TITS.2014.2352854
Filename
6909022
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