• DocumentCode
    1559882
  • Title

    Finite-difference time-domain simulation of scattering from objects in continuous random media

  • Author

    Moss, C.D. ; Teixeira, F.L. ; Yang, Y. Eric ; Kong, Jin Au

  • Author_Institution
    Dept. of Electr. Eng. & Comput. Sci., MIT, Cambridge, MA, USA
  • Volume
    40
  • Issue
    1
  • fYear
    2002
  • fDate
    1/1/2002 12:00:00 AM
  • Firstpage
    178
  • Lastpage
    186
  • Abstract
    A three-dimensional (3D) finite-difference time-domain (FDTD) scheme is introduced to model the scattering from objects in continuous random media. FDTD techniques have been previously applied to scattering from random rough surfaces and randomly placed objects in a homogeneous background, but little has been done to simulate continuous random media with embedded objects where volumetric scattering effects are important. In this work, Monte Carlo analysis is used in conjunction with FDTD to study the scattering from perfectly electrically conducting (PEC) objects embedded in continuous random media. The random medium models under consideration are chosen to be inhomogeneous soils with a spatially fluctuating random permittivities and prescribed correlation functions. The ability of frequency averaging techniques to discriminate objects in this scenarion is also briefly investigated. The simulation scheme described in this work can be adapted and used to help in interpreting the scattered field data from targets in random environments such as geophysical media, biological media, or atmospheric turbulence
  • Keywords
    Monte Carlo methods; backscatter; buried object detection; finite difference time-domain analysis; geophysical techniques; radar cross-sections; radar theory; random media; remote sensing by radar; terrain mapping; terrestrial electricity; Monte Carlo method; backscatter; buried object detection; continuous random media; embedded object; finte-difference method; geoelectric method; geophysical measurement technique; land surface; microwave scattering; objects; radar remote sensing; radar scattering; randomly placed object; terrain mapping; terrestrial electricity; three dimensional model; time domain simulation; volumetric scattering; Finite difference methods; Monte Carlo methods; Nonuniform electric fields; Permittivity; Random media; Rough surfaces; Scattering; Soil; Surface roughness; Time domain analysis;
  • fLanguage
    English
  • Journal_Title
    Geoscience and Remote Sensing, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0196-2892
  • Type

    jour

  • DOI
    10.1109/36.981359
  • Filename
    981359