DocumentCode
1300081
Title
Holographic Subsurface Radar of RASCAN Type: Development and Applications
Author
Ivashov, Sergey I. ; Razevig, Vladimir V. ; Vasiliev, Igor A. ; Zhuravlev, Andrey V. ; Bechtel, Timothy D. ; Capineri, Lorenzo
Author_Institution
Remote Sensing Lab., Bauman Moscow State Tech. Univ., Moscow, Russia
Volume
4
Issue
4
fYear
2011
Firstpage
763
Lastpage
778
Abstract
Holographic subsurface radars (HSR) are not in common usage now; possibly because of the historical view amongst radar practitioners that high attenuation of electromagnetic waves in most media of interest will not allow sufficient depth of penetration. It is true that the fundamental physics of HSR prevent the possibility to change receiver amplification with time (i.e., depth) to adapt to lossy media (as is possible with impulse subsurface radar or ISR). However, use of HSR for surveying of shallow subsurface objects, defects, or inhomogeneities is an increasingly proven area of application. In this case, HSR can record images with higher resolution than is possible for ISR images. The RASCAN family of holographic radars is presented along with technical specifications and typical case histories. Among the applications considered are civil and historic building surveys, nondestructive testing of dielectric materials, security applications, and humanitarian demining. Each application area is illustrated by relevant data acquired in laboratory experiments or field tests. This paper presents experiments with RASCAN imaging in media with different degrees of attenuation, and illustrates the principle of HSR through an optical analogy.
Keywords
absorbing media; electromagnetic waves; geophysical techniques; ground penetrating radar; holography; landmine detection; remote sensing by radar; security; RASCAN imaging; civil building survey; dielectric materials; electromagnetic wave; historic building survey; holographic subsurface radar; humanitarian demining; lossy media; nondestructive testing; penetration depth; receiver amplification; security application; shallow subsurface object; Holographic optical components; Optical imaging; Radar antennas; Radar imaging; Holographic subsurface radar; humanitarian demining; impulse subsurface radar; lossy medium; nondestructive testing; optical analogy; security applications;
fLanguage
English
Journal_Title
Selected Topics in Applied Earth Observations and Remote Sensing, IEEE Journal of
Publisher
ieee
ISSN
1939-1404
Type
jour
DOI
10.1109/JSTARS.2011.2161755
Filename
5986761
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