Title :
Piecewise and Wiener Filter-Based SAR Techniques for Monostatic Microwave Imaging of Layered Structures
Author :
Fallahpour, Mojtaba ; Case, Joseph T. ; Ghasr, Mohammad Tayeb ; Zoughi, Reza
Author_Institution :
Electr. & Comput. Eng. Dept., Missouri Univ. of Sci. & Technol., Rolla, MO, USA
Abstract :
In this paper, two new techniques for microwave imaging of layered structures are introduced. These techniques were developed to address the limiting issues associated with classical synthetic aperture radar (SAR) imaging techniques in generating focused and properly-positioned images of embedded objects in generally layered dielectric structures. The first method, referred to as piecewise SAR (PW-SAR), is a natural extension of the classical SAR technique, and considers physical and electrical properties of each individual layer and the discontinuity among them. Although this method works well with low loss dielectric media, its applicability to lossy media is limited. This is due to the fact that this method does not consider signal attenuation. Moreover, multiple reflections within each layer are not incorporated. To improve imaging performance in which these important phenomena are included, a second method was developed that utilizes the Green´s function of the layered structure and casts the imaging approach into a deconvolution procedure. Subsequently, a Wiener filter-based deconvolution technique is used to solve the problem. The technique is referred to as Wiener filter-based layered SAR (WL-SAR). The performance and efficacy of these SAR based imaging techniques are demonstrated using simulations and corresponding measurements of several different layered media.
Keywords :
Green´s function methods; Wiener filters; deconvolution; microwave imaging; nondestructive testing; radar imaging; synthetic aperture radar; Green function; SAR imaging techniques; Wiener filter based SAR techniques; Wiener filter based deconvolution technique; embedded objects; generally layered dielectric structures; layered structures; lossy media; monostatic microwave imaging; piecewise SAR techniques; signal attenuation; synthetic aperture radar; Antennas; Deconvolution; Imaging; Radar imaging; Reflectivity; Synthetic aperture radar; Wiener filters; Green´s function; Wiener filter deconvolution; layered structures; microwave imaging; nondestructive testing; synthetic aperture radar;
Journal_Title :
Antennas and Propagation, IEEE Transactions on
DOI :
10.1109/TAP.2013.2287024