DocumentCode :
1027344
Title :
Far ultraviolet remote sensing of ionospheric emissions by Polar BEAR
Author :
Oznovich, Israel ; Ravitz, A. ; Tur, Moshe ; Glaser ; Huffman, Robert E. ; Eastes, R.W. ; Quesada, A.F.
Author_Institution :
Fac. of Eng., Tel Aviv Univ., Israel
Volume :
31
Issue :
5
fYear :
1993
fDate :
9/1/1993 12:00:00 AM
Firstpage :
931
Lastpage :
945
Abstract :
A few thousand far-ultraviolet images of the ionosphere have been obtained since December 1986 by the Atmospheric/Ionospheric Remote Sensor (AIRS) aboard the Polar BEAR satellite. Fast algorithms for applying automated satellite-attitude, geometric, and photometric corrections to these images were developed, and the first results are discussed. A software package that is based on these algorithms was implemented and tested. Since no attitude data is available at night (one of the two gauges is a Sun sensor), an algorithm was devised to extrapolate daytime attitude corrections to nighttime. An additional method is offered to correct satellite roll from the measured or extrapolated one based on the dayglow limbs observed at the edges of the image. Geometric rectifications include transformations to the image from the satellite coordinate system to a reference system, and from the reference system to the geographic coordinate system. Radiometric corrections include image enhancement, background airglow subtraction, and off-nadir normalization of auroral emissions. The latter two are based on theoretical calculations of column emission rates, derived by radiative transfer integrations of volume emission rates along the look direction. Results include mapping of auroral arcs in the corrected geomagnetic system, the one most applicable to auroral studies
Keywords :
airglow; atmospheric radiation; aurora; geophysics computing; image processing; ionospheric techniques; remote sensing; AIRS; Atmospheric/Ionospheric Remote Sensor; Polar BEAR; auroral arcs; auroral emissions; background airglow subtraction; column emission rates; dayglow limbs; far ultraviolet remote sensing; geographic coordinate system; geometric correction; geometric rectification; image enhancement; off-nadir normalization; photometric corrections; radiative transfer; radiometric corrections; reference system; satellite coordinate system; satellite roll; satellite-attitude corrections; software package; Image enhancement; Ionosphere; Photometry; Radiometry; Remote sensing; Satellite broadcasting; Software algorithms; Software packages; Software testing; Sun;
fLanguage :
English
Journal_Title :
Geoscience and Remote Sensing, IEEE Transactions on
Publisher :
ieee
ISSN :
0196-2892
Type :
jour
DOI :
10.1109/36.263764
Filename :
263764
Link To Document :
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