DocumentCode :
835116
Title :
Robust Detection of Stochastic Nuclear Quadrupole Resonance Signals
Author :
Somasundaram, Samuel D. ; Jakobsson, Andreas ; Rowe, Michael D. ; Smith, John A S ; Butt, Naveed R. ; Althoefer, Kaspar
Author_Institution :
Div. of Eng., King´´s Coll. London, London
Volume :
56
Issue :
9
fYear :
2008
Firstpage :
4221
Lastpage :
4229
Abstract :
Nuclear quadrupole resonance (NQR) is a solid-state radio frequency (RF) spectroscopic technique, allowing the detection of compounds containing quadrupolar nuclei, a requirement fulfilled by many high explosives and narcotics. The practical use of NQR is restricted by the inherently low signal-to-noise ratio (SNR) of the observed signals, a problem that is further exacerbated by the presence of strong RF interference (RFI). The current literature focuses on the use of conventional, multiple-pulsed NQR (cNQR) to obtain signals. Here, we investigate an alternative method called stochastic NQR (sNQR), having many advantages over cNQR, one of which is the availability of signal-of-interest free samples. In this paper, we exploit these samples forming a matched subspace-type detector and a detector employing a prewhitening approach, both of which are able to efficiently reduce the influence of RFI. Further, many of the ideas already developed for cNQR, including providing robustness to uncertainties in the assumed complex amplitudes and exploiting the temperature dependencies of the NQR spectral components, are recast for sNQR. The presented detectors are evaluated on both simulated and measured trinitro-toluene (TNT) data.
Keywords :
nuclear quadrupole resonance; radiofrequency interference; signal detection; stochastic processes; RF interference; signal-of-interest; signal-to-noise ratio; signals robust detection; solid-state radio frequency spectroscopic technique; stochastic nuclear quadrupole resonance signals; Detectors; Explosives; RF signals; Radio frequency; Radiofrequency interference; Robustness; Signal to noise ratio; Solid state circuits; Spectroscopy; Stochastic resonance; Detection; estimation; quadrupole resonance (QR); robust methods;
fLanguage :
English
Journal_Title :
Signal Processing, IEEE Transactions on
Publisher :
ieee
ISSN :
1053-587X
Type :
jour
DOI :
10.1109/TSP.2008.923809
Filename :
4599177
Link To Document :
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