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Third International Symposium on 3D Data Processing, Visualization, and Transmission (3DPVT'06)
Multiple Camera Calibration Using Robust Perspective Factorization
University of North Carolina, Chapel Hill, USA
June 14-June 16
ISBN: 0-7695-2825-2
Andrei Zaharescu, INRIA Rhone-Alpes, France
Radu Horaud, INRIA Rhone-Alpes, France
Remi Ronfard, INRIA Rhone-Alpes, France
Loic Lefort, INRIA Rhone-Alpes, France
In this paper we address the problem of recovering structure and motion from a large number of intrinsically calibrated perspective cameras. We describe a method that combines (1) weak-perspective reconstruction in the presence of noisy and missing data and (2) an algorithm that updates weak-perspective reconstruction to perspective reconstruction by incrementally estimating the projective depths. The method also solves for the reversal ambiguity associated with affine factorization techniques. The method has been successfully applied to the problem of calibrating the external parameters (position and orientation) of several multiple-camera setups. Results obtained with synthetic and experimental data compare favourably with results obtained with nonlinear minimization such as bundle adjustment.
Citation:
Andrei Zaharescu, Radu Horaud, Remi Ronfard, Loic Lefort, "Multiple Camera Calibration Using Robust Perspective Factorization," 3dpvt, pp.504-511, Third International Symposium on 3D Data Processing, Visualization, and Transmission (3DPVT'06), 2006
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