• DocumentCode
    2560549
  • Title

    Elastic wave propagation modeling on emulated digital CNN-UM architecture

  • Author

    Kozma, Péter ; Sonkoly, Péter ; Szolgay, Péter

  • Author_Institution
    Dept. of Image Process. & Neurocomputing, Veszprem Univ., Hungary
  • fYear
    2005
  • fDate
    28-30 May 2005
  • Firstpage
    126
  • Lastpage
    129
  • Abstract
    The synthetic seismogram has seen many years of widespread and successful application in geophysical prospecting. It is used to simulate the normal incidence reflectivity of a heterogeneous medium and has been employed more recently to obtain the responses of subsurface structural and stratigraphic configurations. The propagation of seismic waves has to be modeled to create synthetic seismograms. The solution of the partial differential equations of motion describing the propagation of stress waves in an elastic medium requires enormous computation power. In this paper a solution of seismic wave propagation will be presented on CNN-UM architecture. Unfortunately the space-dependent equations and the low computational precision do not make it possible to utilize the huge computing power of the analog CNN-UM chips so the Falcon emulated digital CNN-UM architecture is used to implement our solution.
  • Keywords
    cellular neural nets; geophysics computing; partial differential equations; seismic waves; wave propagation; cellular neural network universal machine; elastic wave propagation modeling; emulated digital CNN-UM architecture; partial differential equations; seismic waves; space-dependent equation; stress waves; synthetic seismogram; Analog computers; Cellular neural networks; Computer architecture; Geophysics computing; Image processing; Numerical models; Partial differential equations; Seismic waves; Stress; Very large scale integration; Elastic Wave Propagation; Emulated Digital CNN-UM;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Cellular Neural Networks and Their Applications, 2005 9th International Workshop on
  • Print_ISBN
    0-7803-9185-3
  • Type

    conf

  • DOI
    10.1109/CNNA.2005.1543177
  • Filename
    1543177