DocumentCode
1927838
Title
Fast radar signal simulator for SAR ground penetrating applications
Author
Iorio, M. ; Fois, F. ; Mecozzi, R. ; Catallo, C. ; Picardi, Giovanni ; Seu, R. ; Flamini, E.
Author_Institution
Thales Alenia Space Italy, BU Obs. Syst.& Radar, Rome
fYear
2008
fDate
26-30 May 2008
Firstpage
1
Lastpage
4
Abstract
In the last years, in order to investigate the distribution of water in the upper part of the Matianpsilas crust, two different instruments have been developed, and operative up to now: Mars Advanced Radar for Subsurface and Ionosphere Sounding (MARSIS) and SHA allow RADar (SHARAD). Both the instruments are low frequency (1.8-5 MHz for MARSIS and 20 MHz for SHARAD) Ground Penetrating Radar (GPR) in altimeter configuration which use the synthetic aperture technique. In this work will be presented an efficient procedure to detect the possible presence of specific subsurface features using the available surface topography data. In particular a fast radar signal simulator approach, designed in order to reduce the large computational time that represents the greatest application limit to this detection procedure will be presented. After a theoretical discussion of this technique and its validity, an example of application is presented using the Mars Orbiter Laser Altimeter (MOLA) data.
Keywords
ground penetrating radar; radar signal processing; synthetic aperture radar; Mars Advanced Radar for Subsurface and Ionosphere Sounding; Mars Orbiter Laser Altimeter; SAR ground penetrating applications; fast radar signal simulator; frequency 1.8 MHz to 5 MHz; frequency 20 MHz; ground penetrating radar; shaallow radar; surface topography data; synthetic aperture Radar; Frequency; Ground penetrating radar; Instruments; Ionosphere; Laser radar; Mars; Radar applications; Radar detection; Surface topography; Synthetic aperture radar; Radar signal simulation; ground penetrating radar;
fLanguage
English
Publisher
ieee
Conference_Titel
Radar Conference, 2008. RADAR '08. IEEE
Conference_Location
Rome
ISSN
1097-5659
Print_ISBN
978-1-4244-1538-0
Electronic_ISBN
1097-5659
Type
conf
DOI
10.1109/RADAR.2008.4720762
Filename
4720762
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