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Camera Motion Estimation Through Planar Deformation Determination
Authors:C. Jonchery  F. Dibos  G. Koepfler
Affiliation:(1) MAP5, Université Paris Descartes, 45, rue des Saints-Pères, 75270 Paris Cedex 06, France;(2) LAGA, L2TI Université Paris 13, 99, avenue Jean-Baptiste Clément, 93430 Villetaneuse, France
Abstract:In this paper, we propose a global method for estimating the motion of a camera which films a static scene. Our approach is direct, fast and robust, and deals with adjacent frames of a sequence. It is based on a quadratic approximation of the deformation between two images, in the case of a scene with constant depth in the camera coordinate system. This condition is very restrictive but we show that, provided translation and depth inverse variations are small enough, the error on optical flow involved by the approximation of depths by a constant is small. In this context, we propose a new model of camera motion which allows to separate the image deformation in a similarity and a “purely” projective application, due to change of optical axis direction. This model leads to a quadratic approximation of image deformation that we estimate with an M-estimator; we can immediately deduce camera motion parameters. Electronic Supplementary Material  The online version of this article () contains supplementary material, which is available to authorized users.
Contact Information G. KoepflerEmail:
Keywords:Camera motion estimation  Planar application  Optical flow quadratic approximation  Parameter estimation
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