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Detailed Reference Information |
Gürel, L. and Oguz, U. (2002). Transmitter-receiver-transmitter-configured ground-penetrating radars over randomly heterogeneous ground models. Radio Science 37: doi: 10.1029/2001RS002528. issn: 0048-6604. |
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Ground-penetrating radar (GPR) problems are simulated using the finite-difference time-domain (FDTD) method. The GPR model is configured with arbitrarily polarized three antennas, two of which are transmitting antennas fed 180¿ out of phase. The receiver is placed in the middle of two transmitters, where it receives no direct coupling from the transmitting antennas. The ground is modeled as a dielectric, lossy, and heterogeneous medium. The performances of the transmitter-receiver-transmitter-configured GPRs above the heterogeneous ground models are investigated. The computational domain is terminated by perfectly matched layer (PML) absorbing boundaries. The PML is adapted to match both air and ground regions of the computation space. |
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Abstract |
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Keywords
Exploration Geophysics, Remote sensing, Mathematical Geophysics, Modeling, Electromagnetics, Random media and rough surfaces, Radio Science, Remote sensing |
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Publisher
American Geophysical Union 2000 Florida Avenue N.W. Washington, D.C. 20009-1277 USA 1-202-462-6900 1-202-328-0566 service@agu.org |
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