DocumentCode
3223171
Title
GLRT-detection performance in subsurface sounding
Author
Sciotti, Massimo ; Pastina, Debora ; Lombardo, Pierfrancesco
Author_Institution
Dept. INFOCOM, Univ. of Rome "La Sapienza", Italy
fYear
2004
fDate
26-29 April 2004
Firstpage
529
Lastpage
534
Abstract
The performance of subsurface deep sounding is investigated with reference to the radar sounder, MARSIS (Mars advanced radar for subsurface and ionosphere sounding), aboard the Mars Express mission, designed to investigate the presence of water-related interfaces in the subsurface of Mars. The analysis aims at providing the necessary tools for (i) performance prediction and (ii) data processor design. Using well known models for the backscattered signal, we compare the expected signal-to-clutter ratio values under most of the instrument´s operating conditions. The generalized likelihood ratio (GLR) approach is followed for subsurface interface detection, and along-track integration is introduced in order to achieve the desired performance. In particular, we address the design of the integration window, and the requirements of data homogeneity. A thorough performance analysis is presented to cope with the expected MARSIS scenarios. In particular, we investigate several sources of mismatch between the assumed model and collected data, and derive the performance degradation due to each source.
Keywords
Mars; ground penetrating radar; radar clutter; radar signal processing; GLRT; Mars Express mission; Mars advanced radar for subsurface and ionosphere sounding; backscattered signal; generalized likelihood ratio test; integration window; radar sounder; signal-to-clutter ratio; subsurface interface detection; subsurface sounding; water-related interfaces; Clutter; Degradation; Ice; Instruments; Ionosphere; Mars; Performance analysis; Process design; Radar detection; Thyristors;
fLanguage
English
Publisher
ieee
Conference_Titel
Radar Conference, 2004. Proceedings of the IEEE
Print_ISBN
0-7803-8234-X
Type
conf
DOI
10.1109/NRC.2004.1316481
Filename
1316481
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