• DocumentCode
    1721526
  • Title

    Post-hoc Correction Techniques for Constrained Parameter Estimation in Computer Vision

  • Author

    Scoleri, Tony

  • Author_Institution
    Defence Sci. & Technol. Organ., Edinburgh, SA
  • fYear
    2008
  • Firstpage
    412
  • Lastpage
    419
  • Abstract
    We consider the task of estimating constrained parameters of geometric models which underpin an important class of computer vision problems. A typical model can often be described by two systems of equations, of which one relates image features to parameters, and the other captures internal relationships between the parameters. One way to produce constrained parameters is to first compute an unconstrained estimate by means of the image data and then correct this estimate so that the intra-parameter dependencies are satisfied. This paper focuses on the second stage of estimation and proposes two correction methods applicable to the result of unconstrained minimisation. The performance of the post-hoc correction techniques is evaluated through experiments on estimating the trifocal tensor relating three views of a scene. Results demonstrate that the devised constrained estimators achieve similar accuracy to the maximum likelihood estimator with the advantage of being faster.
  • Keywords
    computer vision; minimisation; parameter estimation; computer vision; constrained parameter estimation; correction methods; maximum likelihood estimator; post-hoc correction; trifocal tensor; unconstrained minimisation; Australia; Computer vision; Equations; Geometry; Maximum likelihood estimation; Motion estimation; Parameter estimation; Parametric statistics; Tensile stress; Transmission line matrix methods; Gauss-Newton method; Weighted Nonlinear Least-Squares method; constrained parameter estimation; maximum likelihood; trifocal tensor;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Digital Image Computing: Techniques and Applications (DICTA), 2008
  • Conference_Location
    Canberra, ACT
  • Print_ISBN
    978-0-7695-3456-5
  • Type

    conf

  • DOI
    10.1109/DICTA.2008.31
  • Filename
    4700051