DocumentCode
1049474
Title
Joint TNT and RDX detection via quadrupole resonance
Author
Xiong, Hong ; Li, Jian ; Barrall, Geoffrey A.
Author_Institution
Univ. of Florida, Florida
Volume
43
Issue
4
fYear
2007
fDate
10/1/2007 12:00:00 AM
Firstpage
1282
Lastpage
1293
Abstract
Quadrupole resonance (QR) technology has been receiving increasing attention for explosive detection in applications including landmine detection. It can be used as a confirming sensor for buried plastic landmine detection by detecting the explosives within the mine. Since a single mine can contain more than one type of explosives (e.g., trinitrotoluene (TNT) and (RDX) compound), a detector designed to detect only one type of explosive may not provide the best detection. We focus herein on the joint detection of TNT and RDX explosives for the landmine detection via the QR sensor. To mitigate the RF interferences (RFIs) associated with the QR measurements, we apply a doubly constrained robust Capon beamformer (DCRCB) to perform the spatial beamforming by exploiting the spatial correlation of the RFIs. Based on the output of the spatial DCRCB, we devise a generalized likelihood ratio test (GLRT) for the joint TNT/RDX detection, which is referred to as the DCRCB-GLRT detector. We show that our detector has the constant false alarm rate (CFAR) property and that the detection variable obeys a x2 -mixture distribution in the mine-free scenario. The effectiveness of the proposed DCRCB-GLRT detector is demonstrated with the experimental data collected by Quantum Magnetics, Inc.
Keywords
antennas; explosives; landmine detection; maximum likelihood estimation; radiofrequency interference; sensors; signal processing; DCRCB-GLRT detector; RDX detection; RFI mitigation method; TNT detection; adaptive spatial beamforming; buried plastic landmine detection; constant false alarm rate property; generalized likelihood ratio test; quadrupole resonance confirming sensor; quadrupole resonance technology; radio frequency interferences; reference antennas; royal demolition explosive; trinitrotoluene; Detectors; Explosives; Interference constraints; Landmine detection; Performance evaluation; Plastics; Radio frequency; Radiofrequency interference; Resonance; Robustness;
fLanguage
English
Journal_Title
Aerospace and Electronic Systems, IEEE Transactions on
Publisher
ieee
ISSN
0018-9251
Type
jour
DOI
10.1109/TAES.2007.4441739
Filename
4441739
Link To Document