DocumentCode
743091
Title
Back-Propagation and Correlation Imaging Using Phase-Space Gaussian-Beams Processing
Author
Heilpern, Tal ; Shlivinski, A. ; Heyman, Ehud
Author_Institution
Sch. of Electr. Eng., Tel Aviv Univ., Tel Aviv, Israel
Volume
61
Issue
11
fYear
2013
Firstpage
5676
Lastpage
5688
Abstract
We present a beam-based imaging scheme for targets in homogeneous medium whereby the fields of the source and receiver arrays are expanded using special phase-space bases of collimated beam fields, thus converting the physical data into a beam-domain data describing the scattering amplitudes seen (synthetically) by the receiver beams due to excitation by the source beams. The image is then formed by correlating the backpropagated beam data with the incident beams. The formulation utilizes the ultra-wideband phase-space beam-summation method where the beam bases consist of Gaussian beams that emerge from a discrete set of points and directions in the source and the receiver domains. An important feature of this method is that the beam-sets are frequency independent and hence are calculated once and then used for all frequencies. A closed form expression for the data-transformation matrix from the physical domain to the beam domain is derived, leading to sparse beam-domain data. The beam approach enables local imaging of any sub-domain of interest by retaining only the subset of source and receiver beams that pass through that domain, thus reducing the overall computation complexity. The method properties are explored via numerical simulations in a noisy environment.
Keywords
backpropagation; computational complexity; image processing; numerical analysis; Gaussian beams; back-propagation; beam fields; beam-based imaging scheme; closed form expression; computation complexity; correlation imaging; data-transformation matrix; incident beams; numerical simulations; phase-space Gaussian-beams processing; receiver beams; scattering amplitudes; source beams; sparse beam-domain data; ultra-wideband phase-space beam-summation; Arrays; Imaging; Lattices; Phased arrays; Receivers; Scattering; Structural beams; Beam-based data processing; Gaussian beams; beam summation method; imaging; inverse scattering;
fLanguage
English
Journal_Title
Antennas and Propagation, IEEE Transactions on
Publisher
ieee
ISSN
0018-926X
Type
jour
DOI
10.1109/TAP.2013.2278220
Filename
6579685
Link To Document