DocumentCode :
3075848
Title :
Intrinsic modeling of radar antennas: From far-field to near-field conditions
Author :
Lambot, Sebastien ; Anh Phuong Tran ; Andre, Frederic
Author_Institution :
Earth & Life Inst., Univ. Catholique de Louvain, Louvain-la-Neuve, Belgium
fYear :
2013
fDate :
2-5 July 2013
Firstpage :
1
Lastpage :
5
Abstract :
We p resent an intrinsic way for modeling radar antennas operating in near-field conditions for wave propagation in planar layered media. Fundamental antenna features consist of an equivalent set of infinitesimal electric dipoles, field points and associated global reflection and transmission coefficient functions. These antenna characteristic functions permit to describe wave propagation between the radar reference plane and the equivalent source dipoles and field points. Near-field antenna-medium coupling is inherently accounted for and the antenna characteristics do not depend on the medium. We show an example of application in which the dielectric permittivity of a sand subject to a range of water contents is estimated from measurements collected with a vector network analyzer connected to a Vivaldi antenna. A very close agreement between the measurements and the model was obtained and the retrieved permittivities were very well consistent with the corresponding water contents. The proposed method shows great promise for digital soil mapping using ground-penetrating radar (GPR) and non-destructive testing of materials.
Keywords :
dipole antennas; electromagnetic wave propagation; electromagnetic wave reflection; electromagnetic wave transmission; ground penetrating radar; network analysers; permittivity; radar antennas; soil; GPR; Vivaldi antenna; dielectric permittivity; digital soil mapping; equivalent source dipole; far-field condition; global reflection coefficient function; global transmission coefficient function; ground-penetrating radar; infinitesimal electric dipole; near-field antenna-medium coupling; nondestructive material testing; planar layered media wave propagation; radar antenna; radar reference plane; sand; vector network analyzer; Antenna measurements; Dipole antennas; Ground penetrating radar; Radar antennas; Radar measurements; Green´s functions; Ground-penetrating radar; intrinsic modeling; near-field antenna modeling; planar layered media;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Advanced Ground Penetrating Radar (IWAGPR), 2013 7th International Workshop on
Conference_Location :
Nantes
Print_ISBN :
978-1-4799-0937-7
Type :
conf
DOI :
10.1109/IWAGPR.2013.6601520
Filename :
6601520
Link To Document :
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