• DocumentCode
    826712
  • Title

    Curvelet-Based Snake for Multiscale Detection and Tracking of Geophysical Fluids

  • Author

    Ma, Jianwei ; Antoniadis, Anestis ; Le Dimet, Francois-Xavier

  • Author_Institution
    Lab. LMC-IMAG, Univ. Joseph Fourier, Grenoble
  • Volume
    44
  • Issue
    12
  • fYear
    2006
  • Firstpage
    3626
  • Lastpage
    3638
  • Abstract
    Detection and target tracking have an application to many scientific problems. The approach developed in this paper is motivated by the applications of detection and tracking characteristic deformable structures in geophysical fluids. We develop an integrated detection and tracking method of geophysical fluids based on a discrete curvelet representation of the information characterizing the targets. Curvelets are in some sense geometric wavelets, allowing an optimal sparse representation of two-dimensional piecewise continuous objects with C 2-singularities. The proposed approach first identifies a consistent vortex by a curvelet-based gradient-vector-flow snake and then establishes the motion correspondence of the snaxels between successive time frames by a constructed so-called semi-T or comp-T multiscale motion-estimation method based on the geometric wavelets. Furthermore, a combination of total-variation regularization and cycle-spinning techniques effectively removes false matches and improves significantly the estimation. Numerical experiments at each stage demonstrate the performance of the proposed tracking methodology for temporal oceanographic satellite image sequences corrupted by noise, with weak edges and submitted to large deformations, in comparison to conventional methods
  • Keywords
    data assimilation; geophysical techniques; motion estimation; remote sensing; target tracking; 2D piecewise continuous objects; characteristic deformable structure; curvelet-based snake; cycle spinning technique; discrete curvelet representation; geometric wavelets; geophysical fluid multiscale detection; geophysical fluid tracking; gradient-vector-flow snake; multiscale motion estimation; optimal sparse representation; target tracking; temporal oceanographic satellite image sequence; total variation regularization; Active contours; Data assimilation; Data mining; Geophysical measurements; Mathematical model; Meteorology; Satellite broadcasting; Sea measurements; TV; Target tracking; Curvelets; motion estimation (ME); snake; total variation (TV); tracking of geophysical fluids;
  • fLanguage
    English
  • Journal_Title
    Geoscience and Remote Sensing, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0196-2892
  • Type

    jour

  • DOI
    10.1109/TGRS.2006.885017
  • Filename
    4014322