Ground-Penetrating Radar Antenna Design for Homogeneous and Low-Loss Dielectric Multilayer Media

Abstract Non-destructive evaluation of multilayer media represents an electromagnetic inverse problem, usually solved with analysis techniques in the time and frequency domains. The time- domain analysis technique depends directly on the accurate detection of reflected peaks measured by ground-penet...

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Main Authors: M. Africano, J. O. Vargas, R. Adriano, D. B. Oliveira, A. C. Lisboa
Format: Article
Language:English
Published: Sociedade Brasileira de Microondas e Optoeletrônica; Sociedade Brasileira de Eletromagnetismo
Series:Journal of Microwaves, Optoelectronics and Electromagnetic Applications
Subjects:
Online Access:http://www.scielo.br/scielo.php?script=sci_arttext&pid=S2179-10742020000200137&lng=en&tlng=en
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spelling doaj-9fe114ffe4814907b551689ad8cd96fc2020-11-25T03:12:09ZengSociedade Brasileira de Microondas e Optoeletrônica; Sociedade Brasileira de EletromagnetismoJournal of Microwaves, Optoelectronics and Electromagnetic Applications2179-107419213715110.1590/2179-10742020v19i2810S2179-10742020000200137Ground-Penetrating Radar Antenna Design for Homogeneous and Low-Loss Dielectric Multilayer MediaM. AfricanoJ. O. VargasR. AdrianoD. B. OliveiraA. C. LisboaAbstract Non-destructive evaluation of multilayer media represents an electromagnetic inverse problem, usually solved with analysis techniques in the time and frequency domains. The time- domain analysis technique depends directly on the accurate detection of reflected peaks measured by ground-penetrating radar (GPR), which limits this technique when the reflected pulses overlap with each other or the transmitted signal. Therefore, this paper presents a new practical methodology to obtain the antenna design requirements (operating frequency and temporal response) that avoid overlapping reflected pulses. The major finding is that the proposed methodology enables the production of specific antennas for the analyzed homogeneous and low-loss dielectric multilayer problem, serving as a practical guide for GPR antenna design. A typical pavement example is analyzed to apply the methodology, and, as a result, an ultra-wideband (UWB) directive antenna with tolerable dispersion is obtained according to the design specifications. Finally, the antenna simulations were compared and validated with measurements.http://www.scielo.br/scielo.php?script=sci_arttext&pid=S2179-10742020000200137&lng=en&tlng=enground-penetrating radarmultilayer problempavementricker waveletuwb antenna
collection DOAJ
language English
format Article
sources DOAJ
author M. Africano
J. O. Vargas
R. Adriano
D. B. Oliveira
A. C. Lisboa
spellingShingle M. Africano
J. O. Vargas
R. Adriano
D. B. Oliveira
A. C. Lisboa
Ground-Penetrating Radar Antenna Design for Homogeneous and Low-Loss Dielectric Multilayer Media
Journal of Microwaves, Optoelectronics and Electromagnetic Applications
ground-penetrating radar
multilayer problem
pavement
ricker wavelet
uwb antenna
author_facet M. Africano
J. O. Vargas
R. Adriano
D. B. Oliveira
A. C. Lisboa
author_sort M. Africano
title Ground-Penetrating Radar Antenna Design for Homogeneous and Low-Loss Dielectric Multilayer Media
title_short Ground-Penetrating Radar Antenna Design for Homogeneous and Low-Loss Dielectric Multilayer Media
title_full Ground-Penetrating Radar Antenna Design for Homogeneous and Low-Loss Dielectric Multilayer Media
title_fullStr Ground-Penetrating Radar Antenna Design for Homogeneous and Low-Loss Dielectric Multilayer Media
title_full_unstemmed Ground-Penetrating Radar Antenna Design for Homogeneous and Low-Loss Dielectric Multilayer Media
title_sort ground-penetrating radar antenna design for homogeneous and low-loss dielectric multilayer media
publisher Sociedade Brasileira de Microondas e Optoeletrônica; Sociedade Brasileira de Eletromagnetismo
series Journal of Microwaves, Optoelectronics and Electromagnetic Applications
issn 2179-1074
description Abstract Non-destructive evaluation of multilayer media represents an electromagnetic inverse problem, usually solved with analysis techniques in the time and frequency domains. The time- domain analysis technique depends directly on the accurate detection of reflected peaks measured by ground-penetrating radar (GPR), which limits this technique when the reflected pulses overlap with each other or the transmitted signal. Therefore, this paper presents a new practical methodology to obtain the antenna design requirements (operating frequency and temporal response) that avoid overlapping reflected pulses. The major finding is that the proposed methodology enables the production of specific antennas for the analyzed homogeneous and low-loss dielectric multilayer problem, serving as a practical guide for GPR antenna design. A typical pavement example is analyzed to apply the methodology, and, as a result, an ultra-wideband (UWB) directive antenna with tolerable dispersion is obtained according to the design specifications. Finally, the antenna simulations were compared and validated with measurements.
topic ground-penetrating radar
multilayer problem
pavement
ricker wavelet
uwb antenna
url http://www.scielo.br/scielo.php?script=sci_arttext&pid=S2179-10742020000200137&lng=en&tlng=en
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AT jovargas groundpenetratingradarantennadesignforhomogeneousandlowlossdielectricmultilayermedia
AT radriano groundpenetratingradarantennadesignforhomogeneousandlowlossdielectricmultilayermedia
AT dboliveira groundpenetratingradarantennadesignforhomogeneousandlowlossdielectricmultilayermedia
AT aclisboa groundpenetratingradarantennadesignforhomogeneousandlowlossdielectricmultilayermedia
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