DocumentCode
1645688
Title
Parameter-unaware autocalibration for occupancy Mapping
Author
Van Hamme, David ; Slembrouck, Maarten ; Van Haerenborgh, Dirk ; Van Cauwelaert, Dimitri ; Veelaert, Peter ; Philips, Wilfried
Author_Institution
TELIN Dept., Ghent Univ., Ghent, Belgium
fYear
2013
Firstpage
1
Lastpage
7
Abstract
People localization and occupancy mapping are common and important tasks for multi-camera systems. In this paper, we present a novel approach to overcome the hurdle of manual extrinsic calibration of the multi-camera system. Our approach is completely parameter unaware, meaning that the user does not need to know the focal length, position or viewing angle in advance, nor will these values be calibrated as such. The only requirement to the multi-camera setup is that the views overlap substantially and are mounted at approximately the same height, requirements that are satisfied in most typical multi-camera configurations. The proposed method uses the observed height of an object or person moving through the space to estimate the distance to the object or person. Using this distance to backproject the lowest point of each detected object, we obtain a rotated and anisotropically scaled view of the ground plane for each camera. An algorithm is presented to estimate the anisotropic scaling parameters and rotation for each camera, after which ground plane positions can be computed up to an isotropic scale factor. Lens distortion is not taken into account. The method is tested in simulation yielding average accuracies within 5cm, and in a real multi-camera environment with an accuracy within 15cm.
Keywords
image motion analysis; lenses; object detection; video cameras; anisotropic scaling parameter; detected object; focal length; ground plane position; isotropic scale factor; lens distortion; localization mapping; manual extrinsic calibration; multicamera configuration; multicamera environment; multicamera setup; multicamera system; occupancy mapping; parameter-unaware autocalibration; position angle; viewing angle; Apertures; Cameras; Estimation error; Government; Manuals;
fLanguage
English
Publisher
ieee
Conference_Titel
Distributed Smart Cameras (ICDSC), 2013 Seventh International Conference on
Conference_Location
Palm Springs, CA
Type
conf
DOI
10.1109/ICDSC.2013.6778205
Filename
6778205
Link To Document