Title :
Image-Domain Estimation of Wall Parameters for Autofocusing of Through-the-Wall SAR Imagery
Author :
Tian Jin ; Bo Chen ; Zhimin Zhou
Author_Institution :
Sch. of Electron. Sci. & Eng., Nat. Univ. of Defense Technol., Changsha, China
Abstract :
Estimation of the basic parameters, wall thickness and dielectric constant, is important in through-the-wall radar imaging. Ambiguities in wall characteristics will degrade the image focusing quality of synthetic-aperture radar. In order to obtain a quick and precise estimation of wall parameters, an equivalent propagation model of an electromagnetic wave in the air-wall-air medium is first developed in this paper. According to the developed propagation model, two filter-based approaches, denoted respectively as the echo-domain-filter-based method and the image-domain-filter-based method, are proposed to estimate wall thickness and dielectric constant by adjusting the two corresponding parameters of the echo-domain filter or the image-domain filter to obtain the best focusing quality of behind-the-wall targets. The processing schemes of the two methods show that the image-domain-filter-based method is more efficient because it does not involve imaging processing in each adjustment. Moreover, the image-domain-filter-based method is accelerated by reducing the dimension of searching space to better the computational efficiency further. Simulation results show that the proposed accelerating image-domain-filter-based method can provide quick and precise estimation of wall parameters.
Keywords :
electromagnetic wave propagation; filtering theory; focusing; permittivity; radar cross-sections; radar imaging; remote sensing by radar; synthetic aperture radar; air-wall-air medium; autofocusing; dielectric constant; dimension reduction; echo domain filter-based method; electromagnetic wave propagation; equivalent propagation model; image domain estimation; image domain filter-based method; image focusing quality; radar imaging; synthetic aperture radar; through-the-wall SAR imagery; wall parameter estimation; wall thickness; wall thickness estimation; Atmospheric modeling; Dielectric constant; Estimation; Geometry; Imaging; Radar imaging; Autofocus; parameter estimation; radar imaging; through the wall;
Journal_Title :
Geoscience and Remote Sensing, IEEE Transactions on
DOI :
10.1109/TGRS.2012.2206395