DocumentCode
893579
Title
Iterative image reconstruction of two-dimensional scatterers illuminated by TE waves
Author
Franceschini, Davide ; Donell, Massimo ; Franceschini, Gabriele ; Massa, Andrea
Author_Institution
Dept. of Inf. & Commun. Technol., Trento Univ., Italy
Volume
54
Issue
4
fYear
2006
fDate
6/1/2006 12:00:00 AM
Firstpage
1484
Lastpage
1494
Abstract
The iterative reconstruction of unknown objects from TE-measured scattered field data is presented. The paper investigates the performance of the iterative multiscaling approach (IMSA) in exploiting transverse electric (TE) illuminations. As a matter of fact, in these conditions, the problem turns out to be more complicated than the tranverse magnetic (TM) scalar one in terms of mathematical model as well as computational costs. However, it is expected that more information on the scenario under test can be drawn from scattered data. Therefore, this study is aimed at verifying whether the TE case can provide additional information on the scenario under test (compared to the TM illumination) and how such an enhancement can be suitably exploited by the IMSA for improving the reconstruction accuracy of the retrieval process. Such an analysis will be carried out by means of a set of numerical experiments concerned with dielectric and metallic targets in single- and multiple-objects configurations. Synthetic as well as experimental data will be dealt with.
Keywords
electromagnetic wave scattering; image reconstruction; iterative methods; 2D scatterers; IMSA; TE illuminations; TE waves; TM illumination; iterative image reconstruction; iterative multiscaling approach; transverse electric illuminations; transverse magnetic illumination; Computational efficiency; Dielectrics; Image reconstruction; Information retrieval; Iterative methods; Lighting; Mathematical model; Scattering; Tellurium; Testing; Electromagnetic scattering; inverse problems; microwave imaging; multiresolution technique; transverse electric (TE) illumination;
fLanguage
English
Journal_Title
Microwave Theory and Techniques, IEEE Transactions on
Publisher
ieee
ISSN
0018-9480
Type
jour
DOI
10.1109/TMTT.2006.871921
Filename
1618567
Link To Document