Autofocus Correction of Phase Distortion Effects on SHARAD Echoes

SHARAD is a frequency-modulated (15-25 MHz) radar sounder that probes the upper few kilometers of the Martian crust and polar layered deposits. At solar zenith angles less than about 100°, the ionosphere of Mars can induce phase distortion in surface and subsurface radar echoes that substantially de...

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Veröffentlicht in:IEEE geoscience and remote sensing letters 2011-09, Vol.8 (5), p.939-942
Hauptverfasser: Campbell, B. A., Putzig, N. E., Carter, L. M., Phillips, R. J.
Format: Artikel
Sprache:eng
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Zusammenfassung:SHARAD is a frequency-modulated (15-25 MHz) radar sounder that probes the upper few kilometers of the Martian crust and polar layered deposits. At solar zenith angles less than about 100°, the ionosphere of Mars can induce phase distortion in surface and subsurface radar echoes that substantially degrades the signal-to-noise ratio and vertical resolution of the range-compressed data. We present a range-compression autofocus approach that estimates the phase distortion of SHARAD data along ground-track segments of about 100 km, using a power-law image-sharpness metric and an empirically derived scaling between the phase correction and radar frequency. This method is rapid, yields a greatly improved subsurface image, and provides a means to track regional and temporal changes in the Martian ionosphere.
ISSN:1545-598X
1558-0571
DOI:10.1109/LGRS.2011.2143692