Model-Corrected Microwave Imaging through Periodic Wall Structures
Author(s) -
Paul Chang,
Robert J. Burkholder,
John L. Volakis
Publication year - 2012
Publication title -
international journal of antennas and propagation
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.282
H-Index - 37
eISSN - 1687-5877
pISSN - 1687-5869
DOI - 10.1155/2012/948365
Subject(s) - distortion (music) , clutter , microwave imaging , nonlinear distortion , nonlinear system , projection (relational algebra) , harmonics , back projection , algorithm , microwave , optics , computer science , physics , mathematics , radar , telecommunications , voltage , amplifier , bandwidth (computing) , quantum mechanics
A model-based imaging framework is applied to correct the target distortion seen in microwave imaging through a periodic wall structure. In addition to propagation delays caused by the wall, it is shown that the structural periodicity induces high-order space harmonics leading to other ghost artifacts in the through-wall image. To overcome these distortions, the periodic layer Green’s function is incorporated into the forward model. A linear back-projection solution and a nonlinear minimization solution are applied to solve the inverse problem. The model-based back-projection image corrects the distortion and has higher resolution compared with free space due to the inclusion of multipath propagation through the periodic wall, but considerable sidelobe clutter is present. The nonlinear solution not only corrects target distortion without clutter but also reduces the solution to a sparse form
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