DocumentCode
21643
Title
Microwave imaging using indirect holographic techniques
Author
Smith, D. ; Yurduseven, Ozan ; Livingstone, B. ; Schejbal, V.
Author_Institution
Sch. of CEIS, Northumbria Univ., Newcastle upon Tyne, UK
Volume
56
Issue
1
fYear
2014
fDate
Feb. 2014
Firstpage
104
Lastpage
117
Abstract
This work describes how indirect holographic techniques, previously applied to the determination of antenna radiation patterns, can be adapted for the imaging of passive objects. It provides details of how complex scattered field values can be obtained in a simple and inexpensive manner from sampled scalar intensity measurements taken over a single scanning aperture. This work provides a brief outline of the basic theory of indirect microwave holography, and how the transformation of the holographic intensity pattern into the Fourier domain enables the isolation of the terms required for complex field reconstruction to be isolated from the remaining terms. The work is supported by a range of experimental results, illustrating the reconstructed complex fields for a number of simple test objects. Back-propagation techniques have also been included to reconstruct complex fields at the position of the scattering objects.
Keywords
Fourier transforms; backpropagation; holography; image reconstruction; microwave imaging; scattering; Fourier domain; antenna radiation patterns; back-propagation techniques; complex field reconstruction; holographic intensity pattern; indirect holographic techniques; indirect microwave holography; microwave imaging; passive objects; scalar intensity measurements; scattered field values; scattering objects; single scanning aperture; Antenna measurements; Holography; Image reconstruction; Microwave antennas; Microwave imaging; Microwave measurement; Microwave theory and techniques; Fourier optics; Microwave imaging; image reconstruction; microwave holography; near-field microwave imaging;
fLanguage
English
Journal_Title
Antennas and Propagation Magazine, IEEE
Publisher
ieee
ISSN
1045-9243
Type
jour
DOI
10.1109/MAP.2014.6821762
Filename
6821762
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