Field Tests of the Vertical-Array Differential Target Antenna Coupling (DTAC) System

We have tested the Vertical-Array Differential Target Antenna Coupling (DTAC) system over a variety of well-characterized, buried targets. The DTAC system produces a primary field in the frequency range of 10 Hz to 10 kHz and records secondary magnetic fields from subsurface targets, relative to a r...

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Main Authors: Feng, Wanjie, Sternberg, Ben K.
Other Authors: Univ Arizona, LASI
Language:en
Published: ENVIRONMENTAL ENGINEERING GEOPHYSICAL SOC 2017
Online Access:http://hdl.handle.net/10150/626249
http://arizona.openrepository.com/arizona/handle/10150/626249
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spelling ndltd-arizona.edu-oai-arizona.openrepository.com-10150-6262492017-12-21T03:00:39Z Field Tests of the Vertical-Array Differential Target Antenna Coupling (DTAC) System Feng, Wanjie Sternberg, Ben K. Univ Arizona, LASI We have tested the Vertical-Array Differential Target Antenna Coupling (DTAC) system over a variety of well-characterized, buried targets. The DTAC system produces a primary field in the frequency range of 10 Hz to 10 kHz and records secondary magnetic fields from subsurface targets, relative to a reference frequency. The current DTAC system has higher power, compared with our earlier tests, and this system is suitable for either ground or airborne mapping of a wide variety of near-surface targets, which might be encountered in civil engineering, water resources, environmental characterization, mining, and other natural-resource exploration. Profiles over three well-characterized targets show a close agreement between the measured DTAC response and model simulations. Conventional field measurements using induced magnetic fields are also displayed and they do not show nearly as effective mapping of the targets. Another profile shows that the DTAC method has greatly reduced sensitivity to surface clutter, compared to conventional measurements. 2017-06-08 Article Field Tests of the Vertical-Array Differential Target Antenna Coupling (DTAC) System 2017, 22 (2):143 Journal of Environmental & Engineering Geophysics 1083-1363 1943-2658 10.2113/JEEG22.2.143 http://hdl.handle.net/10150/626249 http://arizona.openrepository.com/arizona/handle/10150/626249 Journal of Environmental & Engineering Geophysics en http://jeeg.geoscienceworld.org/lookup/doi/10.2113/JEEG22.2.143 © ENVIRONMENTAL AND ENGINEERING GEOPHYSICAL SOCIETY ENVIRONMENTAL ENGINEERING GEOPHYSICAL SOC
collection NDLTD
language en
sources NDLTD
description We have tested the Vertical-Array Differential Target Antenna Coupling (DTAC) system over a variety of well-characterized, buried targets. The DTAC system produces a primary field in the frequency range of 10 Hz to 10 kHz and records secondary magnetic fields from subsurface targets, relative to a reference frequency. The current DTAC system has higher power, compared with our earlier tests, and this system is suitable for either ground or airborne mapping of a wide variety of near-surface targets, which might be encountered in civil engineering, water resources, environmental characterization, mining, and other natural-resource exploration. Profiles over three well-characterized targets show a close agreement between the measured DTAC response and model simulations. Conventional field measurements using induced magnetic fields are also displayed and they do not show nearly as effective mapping of the targets. Another profile shows that the DTAC method has greatly reduced sensitivity to surface clutter, compared to conventional measurements.
author2 Univ Arizona, LASI
author_facet Univ Arizona, LASI
Feng, Wanjie
Sternberg, Ben K.
author Feng, Wanjie
Sternberg, Ben K.
spellingShingle Feng, Wanjie
Sternberg, Ben K.
Field Tests of the Vertical-Array Differential Target Antenna Coupling (DTAC) System
author_sort Feng, Wanjie
title Field Tests of the Vertical-Array Differential Target Antenna Coupling (DTAC) System
title_short Field Tests of the Vertical-Array Differential Target Antenna Coupling (DTAC) System
title_full Field Tests of the Vertical-Array Differential Target Antenna Coupling (DTAC) System
title_fullStr Field Tests of the Vertical-Array Differential Target Antenna Coupling (DTAC) System
title_full_unstemmed Field Tests of the Vertical-Array Differential Target Antenna Coupling (DTAC) System
title_sort field tests of the vertical-array differential target antenna coupling (dtac) system
publisher ENVIRONMENTAL ENGINEERING GEOPHYSICAL SOC
publishDate 2017
url http://hdl.handle.net/10150/626249
http://arizona.openrepository.com/arizona/handle/10150/626249
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AT sternbergbenk fieldtestsoftheverticalarraydifferentialtargetantennacouplingdtacsystem
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