DocumentCode :
88539
Title :
A Near-Infrared-Based Magnetic Induction Tomography Solution to Improve the Image Reconstruction Accuracy in Opaque Environments
Author :
Teniou, Samir ; Meribout, Mahmoud ; Al-Wahedi, Khaled ; Al-Durra, Ahmed ; Al-Hosani, E.
Author_Institution :
Dept. of Electr. Eng., Pet. Inst., Abu Dhabi, United Arab Emirates
Volume :
49
Issue :
4
fYear :
2013
fDate :
Apr-13
Firstpage :
1361
Lastpage :
1366
Abstract :
In this paper, we propose a new magnetic induction tomography (MIT) system which uses, in addition to the set of magnetic coils, some infrared launch-detector fibers surrounding the cross-sectional image plane. The system is used to reconstruct the interior conductivity distribution of the body and to enhance the accuracy of images obtained by a single MIT. A constrained Landweber algorithm is proposed for image reconstruction. It uses both the boundary data obtained from the coils, and the foreground-background fractions at some neighboring elements of the mesh obtained using the infrared fibers. The effectiveness of the proposed method is demonstrated by numerical data generated for some circular phantoms. Comparisons, in terms of several metrics, between the reconstructed images obtained using the new method and a conventional MIT based on Landweber reconstruction clearly show the outperformance of the method.
Keywords :
eddy current testing; image reconstruction; tomography; constrained Landweber algorithm; cross sectional image plane; foreground-background fraction; image reconstruction accuracy; infrared fiber; infrared launch detector fiber; interior conductivity distribution; magnetic coil; near infrared based magnetic induction tomography; opaque environments; Absorption; Coils; Conductivity; Image reconstruction; Magnetic resonance imaging; Optical fiber sensors; Tomography; Constraints; finite element mesh; image reconstruction; infrared fibers; magnetic induction tomography (MIT);
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2012.2232301
Filename :
6376205
Link To Document :
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