• DocumentCode
    34869
  • Title

    Fast Edge-Aware Processing via First Order Proximal Approximation

  • Author

    Badri, Hicham ; Yahia, Hussein ; Aboutajdine, Driss

  • Author_Institution
    Bordeaux Sud-Ouest, INRIA, Talence, France
  • Volume
    21
  • Issue
    6
  • fYear
    2015
  • fDate
    June 1 2015
  • Firstpage
    743
  • Lastpage
    755
  • Abstract
    We present a new framework for fast edge-aware processing of images and videos. The proposed smoothing method is based on an optimization formulation with a non-convex sparse regularization for a better smoothing behavior near strong edges. We develop mathematical tools based on first order approximation of proximal operators to accelerate the proposed method while maintaining high-quality smoothing. The first order approximation is used to estimate a solution of the proximal form in a half-quadratic solver, and also to derive a warm-start solution that can be calculated quickly when the image is loaded by the user. We extend the method to large-scale processing by estimating the smoothing operation with independent 1D convolution operations. This approach linearly scales to the size of the image and can fully take advantage of parallel processing. The method supports full color filtering and turns out to be temporally coherent for fast video processing. We demonstrate the performance of the proposed method on various applications including image smoothing, detail manipulation, HDR tone-mapping, fast edge simplification and video edge-aware processing.
  • Keywords
    approximation theory; convolution; smoothing methods; video signal processing; HDR tone-mapping; detail manipulation; fast edge simplification; fast edge-aware image processing; fast edge-aware video processing; first order proximal approximation; full color filtering; half-quadratic solver; image smoothing method; independent 1D convolution operations; mathematical tools; nonconvex sparse regularization; parallel processing; proximal operators; Approximation methods; Convolution; Equations; Image edge detection; Laplace equations; Mathematical model; Smoothing methods; Fast image smoothing; edge-aware processing; sparsity;
  • fLanguage
    English
  • Journal_Title
    Visualization and Computer Graphics, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1077-2626
  • Type

    jour

  • DOI
    10.1109/TVCG.2015.2396064
  • Filename
    7018984