Herein we present a super resolution and electromagnetic interference suppression technique based on Maximum Entropy Method and applied to data acquired by the SHAllow RADar (SHARAD) on board the NASA's 2005 Mars Reconnaissance Orbiter (MRO) mission, currently operating on Mars. We show that the proposed algorithm allows to enhance signal-to-noise ratio by several decibels and the range resolution over a factor of three. Subsurface imaging is improved remarkably, allowing additional insights for the scientific community in the interpretation of the SHARAD radar data
The SHARAD (shallow radar) sounding radar on the Mars Reconnaissance Orbiter detects subsurface refl...
SHARAD is a sounder provided by ASI, which is participating as a facility instrument to 2005 NASA s ...
Abstract P41B-1372The SHAllow RADar (SHARAD) is a subsurface sounding instrument aboard the NASA's M...
Orbital radar sounders are an effective tool to investigate the interior of planetary bodies. Typica...
SHARAD description. The Shallow Radar (SHARAD) (S1) on the Mars Reconnaissance Orbiter spacecraft ha...
The SHAllow RADar (SHARAD) onboard Mars Reconnaissance Orbiter (MRO) is a 20 MHz Synthetic Aperture ...
(MRR) is a passive VHF radar network located in the Pacific Northwest. The radar leverages commercia...
MARSIS (Mars Advanced Radar for Subsurface and Ionosphere Sounding) is a low frequency, pulse-limite...
International audienceThe ExoMars 2022 rover mission has been designed to search for traces of life,...
Radar sounders are spaceborne electromagnetic sensors specifically designed for subsurface investiga...
This work provides results from a thorough investigation of atmospheric radar imaging including theo...
The planetary radar (e.g. MARSIS) data inversion is based on the selection of groups of stationary f...
This work deals with the range compression applied to MARSIS (Mars Radar for Subsurface and Ionosphe...
SHARAD is a subsurface sounding radar provided by the Italian Space Agency (ASI) as a facility instr...
Image processing techniques can be used to improve the cost-effectiveness of future interferometric ...
The SHARAD (shallow radar) sounding radar on the Mars Reconnaissance Orbiter detects subsurface refl...
SHARAD is a sounder provided by ASI, which is participating as a facility instrument to 2005 NASA s ...
Abstract P41B-1372The SHAllow RADar (SHARAD) is a subsurface sounding instrument aboard the NASA's M...
Orbital radar sounders are an effective tool to investigate the interior of planetary bodies. Typica...
SHARAD description. The Shallow Radar (SHARAD) (S1) on the Mars Reconnaissance Orbiter spacecraft ha...
The SHAllow RADar (SHARAD) onboard Mars Reconnaissance Orbiter (MRO) is a 20 MHz Synthetic Aperture ...
(MRR) is a passive VHF radar network located in the Pacific Northwest. The radar leverages commercia...
MARSIS (Mars Advanced Radar for Subsurface and Ionosphere Sounding) is a low frequency, pulse-limite...
International audienceThe ExoMars 2022 rover mission has been designed to search for traces of life,...
Radar sounders are spaceborne electromagnetic sensors specifically designed for subsurface investiga...
This work provides results from a thorough investigation of atmospheric radar imaging including theo...
The planetary radar (e.g. MARSIS) data inversion is based on the selection of groups of stationary f...
This work deals with the range compression applied to MARSIS (Mars Radar for Subsurface and Ionosphe...
SHARAD is a subsurface sounding radar provided by the Italian Space Agency (ASI) as a facility instr...
Image processing techniques can be used to improve the cost-effectiveness of future interferometric ...
The SHARAD (shallow radar) sounding radar on the Mars Reconnaissance Orbiter detects subsurface refl...
SHARAD is a sounder provided by ASI, which is participating as a facility instrument to 2005 NASA s ...
Abstract P41B-1372The SHAllow RADar (SHARAD) is a subsurface sounding instrument aboard the NASA's M...