DocumentCode :
1218686
Title :
Stereoscopic dual-energy X-ray imaging for target materials identification
Author :
Wang, T.W. ; Evans, J.P.O.
Author_Institution :
Vision Syst. Group, Nottingham Trent Univ., UK
Volume :
150
Issue :
2
fYear :
2003
fDate :
4/21/2003 12:00:00 AM
Firstpage :
122
Lastpage :
130
Abstract :
An experimental stereoscopic dual-energy X-ray imaging system is employed to extract the effective atomic number from a target layer of multiple layers of different materials. Further work investigated utilising stereoscopic parallax data to calculate layer thickness which, when combined with dual-energy data, enables the mass density of the target to be established. The research is part of an ongoing programme of work in collaboration with the UK Home Office to discriminate and identify substances in X-ray security screening applications. Initial work utilised a basis materials decomposition (BMD) technique to compute the characteristic angle, an indicator of atomic composition. The problem of overlapping materials masking a target was solved by further refinement of the BMD method, which can also be used determine mass density when layer thickness is known. The empirical investigation concentrated on computing the characteristic angle for different target materials in various overlapping arrangements. Also, the results from employing manually extracted parallax data to calculate the thickness of a target material are presented together with the resultant estimation of the targets´ mass density.
Keywords :
X-ray imaging; conveyors; inspection; security; stereo image processing; BMD method; UK Home Office; X-ray security screening applications; basis materials decomposition; characteristic angle; effective atomic number; layer thickness; mass density; stereoscopic dual-energy X-ray imaging; stereoscopic parallax data; target materials identification;
fLanguage :
English
Journal_Title :
Vision, Image and Signal Processing, IEE Proceedings -
Publisher :
iet
ISSN :
1350-245X
Type :
jour
DOI :
10.1049/ip-vis:20030166
Filename :
1204742
Link To Document :
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