• DocumentCode
    1456251
  • Title

    A New Sparse Representation of Seismic Data Using Adaptive Easy-Path Wavelet Transform

  • Author

    Ma, Jianwei ; Plonka, Gerlind ; Chauris, Hervé

  • Author_Institution
    Sch. of Aerosp., Tsinghua Univ., Beijing, China
  • Volume
    7
  • Issue
    3
  • fYear
    2010
  • fDate
    7/1/2010 12:00:00 AM
  • Firstpage
    540
  • Lastpage
    544
  • Abstract
    Sparse representation of seismic data is a crucial step for seismic forward modeling and seismic processing such as coherent noise separation, imaging, and sparsity-promoting data recovery. In this letter, a new locally adaptive wavelet transform, called easy-path wavelet transform (EPWT), is applied for the sparse representation of seismic data. The EPWT is an adaptive geometric wavelet transform that works along a series of special pathways through the input data and exploits the local correlations of the data. The transform consists of two steps: reorganizing the data following the pathways according to the data values and then applying a 1-D wavelet transform along the pathways. This leads to a very sparse wavelet representation. In comparison to conventional wavelets, the EPWT concentrates most of the energy of signals at smooth scales and needs less significant wavelet coefficients to represent signals. Numerical experiments show that the new method is really superior over the conventional wavelets and curvelets in terms of sparse representation and compression of seismic data.
  • Keywords
    geophysical signal processing; geophysical techniques; seismology; wavelet transforms; 1D wavelet transform; adaptive easy-path wavelet transform; adaptive geometric wavelet transform; coherent noise separation; numerical experiments; seismic data; seismic forward modeling; seismic processing; sparse representation; wavelet coefficients; Adaptive wavelets; curvelets; easy-path wavelet transform (EPWT); seismic processing; sparse representation;
  • fLanguage
    English
  • Journal_Title
    Geoscience and Remote Sensing Letters, IEEE
  • Publisher
    ieee
  • ISSN
    1545-598X
  • Type

    jour

  • DOI
    10.1109/LGRS.2010.2041185
  • Filename
    5439772