DocumentCode :
1709552
Title :
A directional borehole radar: numerical and experimental verification
Author :
van Dongen, K.W.A. ; van den Berg, P.M. ; Fokkema, J.T.
Author_Institution :
T&A RADAR, Amsterdam, Netherlands
Volume :
2
fYear :
2001
Firstpage :
746
Abstract :
We present the simulation and design of an antenna system for a borehole radar. To obtain a directional radiation pattern the transmitting dipole is shielded with a reflector. The generated transient wavefield, with a centre frequency of 100 MHz, is reflected in the desired direction by a perfectly conducting cylindrically curved plate. The radiation pattern of this scattered wavefield is computed by solving the integral equation for the unknown electric surface current at the reflector. The reflector can have either a circular cylindrical shape or a parabolic cylindrical shape. Once the electric current distributions at the dipole and the reflector are known, the radiated wavefield can be represented by an integral over the wire and the curved plate. A prototype has been built and the simulated data are compared with experimental results.
Keywords :
antenna radiation patterns; dipole antennas; directive antennas; integral equations; radar antennas; reflector antennas; 100 MHz; circular cylindrical shape reflector; directional borehole radar; directional radiation pattern; electric current distributions; generated transient wavefield; integral equation; numerical solution; parabolic cylindrical shape reflector; perfectly conducting cylindrically curved plate; reflector shield; scattered wavefield; transmitting dipole; unknown electric surface current; Antenna radiation patterns; Current; Dipole antennas; Frequency; Integral equations; Radar antennas; Radar scattering; Shape; Surface waves; Wire;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Antennas and Propagation Society International Symposium, 2001. IEEE
Conference_Location :
Boston, MA, USA
Print_ISBN :
0-7803-7070-8
Type :
conf
DOI :
10.1109/APS.2001.959831
Filename :
959831
Link To Document :
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