DocumentCode :
703541
Title :
New closed-form solutions to image flow equations for EGO-motion applications considering variations of the focal distance
Author :
Menendez, Jose M. ; Garcia, Narciso ; Salgado, Luis ; Rendon, Enrique
Author_Institution :
Grupo de Tratamiento de Imagenes, Univ. Politec. de Madrid, Madrid, Spain
fYear :
1998
fDate :
8-11 Sept. 1998
Firstpage :
1
Lastpage :
4
Abstract :
Ego-motion requires the determination of the position and trajectory of the moving vehicle just by analysing the sequence of images acquired along its movement. Here, we present an analytical procedure for the estimation of the three-dimensional kinematic parameters of the vehicle, and the depth map that describes the three-dimensional structure of the world that surrounds the acquisition camera (only monocular gray-level images are considered). Since we do not only consider the possibility of translational and rotational movement in the acquisition camera, but we also allow for variations in the focal distance of the lens (zoom), This proposal clearly extends the one proposed by Waxman et al. [IO]. Our proposed solution also provides the way to obtain an estimation of the variation of the focal distance that the camera has applied. The procedure is simple, and relies on the assumption of second order surface patches on the visualised objects.
Keywords :
cameras; image motion analysis; image sequences; parameter estimation; acquisition camera; closed-form solution; egomotion application; focal distance; focal distance variation estimation; image acquisition; image flow equation; image sequence; monocular gray-level imaging; rotational movement; three-dimensional kinematic parameter estimation; translational movement; Adaptive optics; Cameras; Estimation; Mathematical model; Optical imaging; Polynomials; Vehicles;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Signal Processing Conference (EUSIPCO 1998), 9th European
Conference_Location :
Rhodes
Print_ISBN :
978-960-7620-06-4
Type :
conf
Filename :
7090012
Link To Document :
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