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Ground Penetrating Radar (GPR) is one of the application development of radar. Like other common radar system, Antenna is one of the important part in GPR. The writer simulates antenna which can be used for transmitting 1.6 ns pulse in this Final Project. The duration of this pulse is in a middle ra...

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Main Author: SUHARA SIANIPAR (NIM 13204168), ROMMEL
Format: Final Project
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/11322
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Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:11322
spelling id-itb.:113222017-09-27T10:18:44Z#TITLE_ALTERNATIVE# SUHARA SIANIPAR (NIM 13204168), ROMMEL Indonesia Final Project INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/11322 Ground Penetrating Radar (GPR) is one of the application development of radar. Like other common radar system, Antenna is one of the important part in GPR. The writer simulates antenna which can be used for transmitting 1.6 ns pulse in this Final Project. The duration of this pulse is in a middle range frequency that can be used for archeologic use and concrete inspection.<p> <br /> <br /> <br /> The proposed antenna is dipole antenna. This dipole antenna equipped with 655 resistive loading and 6 layered dielectric slabs. Resistif loading is used to minimize ringging and layered dielectric slab is used as transition for electromagnetic waves to travel from antenna to medium to maximize signals amplitude that detected in the medium. Resistive loads are based on Wu-King profile, and the &#949;r of layered dielectric slabs are based on linear profile. The thickness of each layer is constant. The reason of these configuration is because of the simplicity. Parameter which will be analyzed in this Final Project are main pulse and ringing peak to peak amplitude, input impedance and VSWR.<p> <br /> <br /> <br /> For electromagnetic analysis in time domain we use FDTD (finite-difference time-domain) method with FDTD3D software to measure transmitted waveform in time domain. To obtain input impedance and VSWR, we use Matlab to process data from FDTD. text
institution Institut Teknologi Bandung
building Institut Teknologi Bandung Library
continent Asia
country Indonesia
Indonesia
content_provider Institut Teknologi Bandung
collection Digital ITB
language Indonesia
description Ground Penetrating Radar (GPR) is one of the application development of radar. Like other common radar system, Antenna is one of the important part in GPR. The writer simulates antenna which can be used for transmitting 1.6 ns pulse in this Final Project. The duration of this pulse is in a middle range frequency that can be used for archeologic use and concrete inspection.<p> <br /> <br /> <br /> The proposed antenna is dipole antenna. This dipole antenna equipped with 655 resistive loading and 6 layered dielectric slabs. Resistif loading is used to minimize ringging and layered dielectric slab is used as transition for electromagnetic waves to travel from antenna to medium to maximize signals amplitude that detected in the medium. Resistive loads are based on Wu-King profile, and the &#949;r of layered dielectric slabs are based on linear profile. The thickness of each layer is constant. The reason of these configuration is because of the simplicity. Parameter which will be analyzed in this Final Project are main pulse and ringing peak to peak amplitude, input impedance and VSWR.<p> <br /> <br /> <br /> For electromagnetic analysis in time domain we use FDTD (finite-difference time-domain) method with FDTD3D software to measure transmitted waveform in time domain. To obtain input impedance and VSWR, we use Matlab to process data from FDTD.
format Final Project
author SUHARA SIANIPAR (NIM 13204168), ROMMEL
spellingShingle SUHARA SIANIPAR (NIM 13204168), ROMMEL
#TITLE_ALTERNATIVE#
author_facet SUHARA SIANIPAR (NIM 13204168), ROMMEL
author_sort SUHARA SIANIPAR (NIM 13204168), ROMMEL
title #TITLE_ALTERNATIVE#
title_short #TITLE_ALTERNATIVE#
title_full #TITLE_ALTERNATIVE#
title_fullStr #TITLE_ALTERNATIVE#
title_full_unstemmed #TITLE_ALTERNATIVE#
title_sort #title_alternative#
url https://digilib.itb.ac.id/gdl/view/11322
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