Radio Frequency Interference Suppression for Landmine Detection by Quadrupole Resonance

<p/> <p>The quadrupole resonance (QR) technology can be used as a confirming sensor for buried plastic landmine detection by detecting the explosives within the mine. We focus herein on the detection of TNT mines via the QR sensor. Since the frequency of the QR signal is located within t...

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Main Authors: Liu Guoqing, Jiang Yi, Xiong Hong, Li Jian, Barrall Geoffrey A
Format: Article
Language:English
Published: SpringerOpen 2006-01-01
Series:EURASIP Journal on Advances in Signal Processing
Online Access:http://dx.doi.org/10.1155/ASP/2006/29890
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spelling doaj-d6bc43dd52734fbfb2b88a30a6e596082020-11-25T00:21:07ZengSpringerOpenEURASIP Journal on Advances in Signal Processing1687-61721687-61802006-01-0120061029890Radio Frequency Interference Suppression for Landmine Detection by Quadrupole ResonanceLiu GuoqingJiang YiXiong HongLi JianBarrall Geoffrey A<p/> <p>The quadrupole resonance (QR) technology can be used as a confirming sensor for buried plastic landmine detection by detecting the explosives within the mine. We focus herein on the detection of TNT mines via the QR sensor. Since the frequency of the QR signal is located within the AM radio frequency band, the QR signal can be corrupted by strong radio frequency interferences (RFIs). Hence to detect the very weak QR signal, RFI mitigation is essential. Reference antennas, which receive RFIs only, can be used together with the main antenna, which receives both the QR signal and the RFIs, for RFI mitigation. The RFIs are usually colored both spatially and temporally, and hence exploiting only the spatial diversity of the antenna array may not give the best performance. We exploit herein both the spatial and temporal correlations of the RFIs to improve the TNT detection performance.</p> http://dx.doi.org/10.1155/ASP/2006/29890
collection DOAJ
language English
format Article
sources DOAJ
author Liu Guoqing
Jiang Yi
Xiong Hong
Li Jian
Barrall Geoffrey A
spellingShingle Liu Guoqing
Jiang Yi
Xiong Hong
Li Jian
Barrall Geoffrey A
Radio Frequency Interference Suppression for Landmine Detection by Quadrupole Resonance
EURASIP Journal on Advances in Signal Processing
author_facet Liu Guoqing
Jiang Yi
Xiong Hong
Li Jian
Barrall Geoffrey A
author_sort Liu Guoqing
title Radio Frequency Interference Suppression for Landmine Detection by Quadrupole Resonance
title_short Radio Frequency Interference Suppression for Landmine Detection by Quadrupole Resonance
title_full Radio Frequency Interference Suppression for Landmine Detection by Quadrupole Resonance
title_fullStr Radio Frequency Interference Suppression for Landmine Detection by Quadrupole Resonance
title_full_unstemmed Radio Frequency Interference Suppression for Landmine Detection by Quadrupole Resonance
title_sort radio frequency interference suppression for landmine detection by quadrupole resonance
publisher SpringerOpen
series EURASIP Journal on Advances in Signal Processing
issn 1687-6172
1687-6180
publishDate 2006-01-01
description <p/> <p>The quadrupole resonance (QR) technology can be used as a confirming sensor for buried plastic landmine detection by detecting the explosives within the mine. We focus herein on the detection of TNT mines via the QR sensor. Since the frequency of the QR signal is located within the AM radio frequency band, the QR signal can be corrupted by strong radio frequency interferences (RFIs). Hence to detect the very weak QR signal, RFI mitigation is essential. Reference antennas, which receive RFIs only, can be used together with the main antenna, which receives both the QR signal and the RFIs, for RFI mitigation. The RFIs are usually colored both spatially and temporally, and hence exploiting only the spatial diversity of the antenna array may not give the best performance. We exploit herein both the spatial and temporal correlations of the RFIs to improve the TNT detection performance.</p>
url http://dx.doi.org/10.1155/ASP/2006/29890
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AT xionghong radiofrequencyinterferencesuppressionforlandminedetectionbyquadrupoleresonance
AT lijian radiofrequencyinterferencesuppressionforlandminedetectionbyquadrupoleresonance
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