Title :
Ground penetrating radar tomography
Author :
Molyneux, John E.
Author_Institution :
Dept. of Mech. Eng., Widener Univ., Chester, PA, USA
Abstract :
Presents a survey of theory and practice in tomographic imaging of subsurface features utilizing ground penetrating radar (GPR). The discussion includes: (i) A brief review of the equations governing radar scattering culminating in the Lippmann Schwinger (LS) equation. (ii) A summary of approximations often made in developing GPR imaging algorithms based on inversion of the LS equation: the scalar wave approximation, the two dimensional scattering model, and neglect of multiple scattering. (iii) A description of certain inversion algorithms used in GPR work. This includes a short discussion of ill-posed problems utilizing a one dimensional model equation, a review of difficulties characteristic of tomographic inversion, a summary of results based on linearized inversion methods such as Devaney´s (1992) generalized projection slice theorem, and finally, a brief overview of the some numerical algorithms. (iv) A discussion of a field study using GPR to image shallow targets
Keywords :
electromagnetic wave scattering; geophysical signal processing; inverse problems; radar cross-sections; radar imaging; remote sensing by radar; Lippmann Schwinger equation; ground penetrating radar tomography; ill-posed problems; imaging algorithms; inversion; inversion algorithms; linearized inversion methods; multiple scattering; numerical algorithms; one dimensional model equation; radar scattering; scalar wave approximation; shallow targets; subsurface features; tomographic imaging; tomographic inversion; Conductivity; Geophysics computing; Green´s function methods; Ground penetrating radar; Integral equations; Maxwell equations; Permeability; Radar imaging; Radar scattering; Tomography;
Conference_Titel :
Acoustics, Speech, and Signal Processing, 1995. ICASSP-95., 1995 International Conference on
Conference_Location :
Detroit, MI
Print_ISBN :
0-7803-2431-5
DOI :
10.1109/ICASSP.1995.479430