The paper describes the performance of a multi-sensor package designed to measure the electromagnetic properties of the subsurface during future landing missions to Mars. The package consists of a soil dielectric spectroscopy probe (SDSP), a ground penetrating radar (GPR) and a time domain electromagnetic measurement (TDEM) system that, using different methods, estimate the electromagnetic properties of the shallow subsurface at different depths (0–100 m). A data fusion approach is considered to improve the reliability and accuracy of the measurements.
MUSES: multi-sensor soil electromagnetic sounding / Vannaroni, G.; Pettinelli, E.; Ottonello, C.; Cereti, A.; DELLA MONICA, G.; DEL VENTO, D.; DI LELLIS, A. M.; DI MAIO, Rosa; Filippini, R.; Galli, A.; Menghini, A.; Orosei, R.; Orsini, S.; Pagnan, S.; Paolucci, F.; Pisani, A. R.; Schettini, G.; Storini, M.; Tacconi, G.. - In: PLANETARY AND SPACE SCIENCE. - ISSN 0032-0633. - STAMPA. - 52:(2004), pp. 67-78. [10.1016/j.pss.2003.07.003]
MUSES: multi-sensor soil electromagnetic sounding
DI MAIO, ROSA;
2004
Abstract
The paper describes the performance of a multi-sensor package designed to measure the electromagnetic properties of the subsurface during future landing missions to Mars. The package consists of a soil dielectric spectroscopy probe (SDSP), a ground penetrating radar (GPR) and a time domain electromagnetic measurement (TDEM) system that, using different methods, estimate the electromagnetic properties of the shallow subsurface at different depths (0–100 m). A data fusion approach is considered to improve the reliability and accuracy of the measurements.File | Dimensione | Formato | |
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