DocumentCode
1061428
Title
MoM Analysis of Dipole Antennas in Crosshole Borehole Radar and Field Experiments
Author
Ebihara, Satoshi ; Hashimoto, Yuuki
Author_Institution
Osaka Electro-Commun. Univ., Osaka
Volume
45
Issue
8
fYear
2007
Firstpage
2435
Lastpage
2450
Abstract
In this paper, we propose a method-of-moments (MoM) analysis that includes the borehole effects on crosshole borehole radar, and we verify that the MoM represents the crosshole borehole radar data correctly. We derive the far-field approximation of an electric field radiated by an electric point source. In this derivation, we assume that the point source is in a cylindrically layered medium, while the observed electric field is in another cylindrically layered medium. The equations that are derived are used as a transfer function to connect the two impedance matrices - one for the transmitting antenna and the other one for the receiving one. In these matrices, the influence of the scattered field by the borehole is included completely. We conducted field experiments in granite with a controlled borehole medium in order to investigate the influence of the borehole. In this paper, we estimated the relative amplitude and the group delay of the received signals between the water-filled borehole case and the air-filled borehole case. This paper showed that the estimated amplitude and delay depend on the frequency and that the proposed MoM could predict these frequency dependencies.
Keywords
dipole antennas; geophysical techniques; ground penetrating radar; method of moments; MoM analysis; air-filled borehole; borehole effects; crosshole borehole radar; dipole antennas; electric point source; far-field approximation; granite; impedance matrices; method-of-moments analysis; transfer function; water-filled borehole; Amplitude estimation; Delay estimation; Dipole antennas; Equations; Frequency estimation; Impedance; Moment methods; Radar antennas; Receiving antennas; Transfer functions; Asymptotic expansion; Green´s functions; borehole effects; borehole radar; crosshole; method of moments (MoM);
fLanguage
English
Journal_Title
Geoscience and Remote Sensing, IEEE Transactions on
Publisher
ieee
ISSN
0196-2892
Type
jour
DOI
10.1109/TGRS.2006.888431
Filename
4276882
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