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Wereport an implementation of the Ground Penetrating Radar (GPR) survey at a site that corresponds to a ruined
castle. The objective of the survey was to characterise buried archaeological structures such as walls and tiles in Van Khan
Tooril’s Ruin, Mongolia, by 2D and 3D GPR techniques. GPR datasets were acquired in an area 10mby 9 m, with 10 cm line
spacing.Twodatasets were collected, usingGPRwith 500MHzand 800MHzfrequency antennas. In this paper,we report the
use of instantaneous parameters to detect archaeological targets such as tile, brick, and masonry by polarimetric GPR. Radar
polarimetry is an advanced technology for extraction of target scattering characteristics. It gives us much more information
about the size, shape, orientation, and surface condition of radar targets.
We focused our interpretation on the strongest reflections. The image is enhanced by the use of instantaneous parameters.
Judging by the shape and the width of the reflections, it is clear that moderate to high intensity response in instantaneous
amplitude corresponds to brick and tiles. The instantaneous phase map gave information about the location of the targets,
which appeared as discontinuities in the signal. In order to increase our ability to interpret these archaeological targets, we
compared theGPRdatasets acquired in two orthogonal survey directions.Agood correlation is observed for the alignments of
reflections when we compare the two datasets. However, more reflections appear in the north-south survey direction than in
the west-east direction. This is due to the electric field orientation, which is in the horizontal plane for north-south survey
directions and the horizontally polarised component of the backscattered high energy is recorded.
Wereport an implementation of the Ground Penetrating Radar (GPR) survey at a site that corresponds to a ruined
castle. The objective of the survey was to characterise buried archaeological structures such as walls and tiles in Van Khan
Tooril’s Ruin, Mongolia, by 2D and 3D GPR techniques. GPR datasets were acquired in an area 10mby 9 m, with 10 cm line
spacing.Twodatasets were collected, usingGPRwith 500MHzand 800MHzfrequency antennas. In this paper,we report the
use of instantaneous parameters to detect archaeological targets such as tile, brick, and masonry by polarimetric GPR. Radar
polarimetry is an advanced technology for extraction of target scattering characteristics. It gives us much more information
about the size, shape, orientation, and surface condition of radar targets.
We focused our interpretation on the strongest reflections. The image is enhanced by the use of instantaneous parameters.
Judging by the shape and the width of the reflections, it is clear that moderate to high intensity response in instantaneous
amplitude corresponds to brick and tiles. The instantaneous phase map gave information about the location of the targets,
which appeared as discontinuities in the signal. In order to increase our ability to interpret these archaeological targets, we
compared theGPRdatasets acquired in two orthogonal survey directions.Agood correlation is observed for the alignments of
reflections when we compare the two datasets. However, more reflections appear in the north-south survey direction than in
the west-east direction. This is due to the electric field orientation, which is in the horizontal plane for north-south survey
directions and the horizontally polarised component of the backscattered high energy is recorded.
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- Publisher :Korean Society of Earth and Exploration Geophysicists
- Publisher(Ko) :한국지구물리물리탐사학회
- Journal Title :Geophysics and Geophysical Exploration
- Journal Title(Ko) :지구물리와 물리탐사
- Volume : 12
- No :1
- Pages :69~76


Geophysics and Geophysical Exploration






