DocumentCode
1109318
Title
Analysis of the Special Sensor Microwave Imager/Sounder (SSMIS) Fields-of-View on DMSP F16
Author
Kunkee, David B. ; Hong, Ye ; Thompson, David A. ; Werner, Michael F. ; Poe, Gene A.
Author_Institution
Aerosp. Corp., Los Angeles
Volume
46
Issue
4
fYear
2008
fDate
4/1/2008 12:00:00 AM
Firstpage
934
Lastpage
945
Abstract
The Special Sensor Microwave Imager/Sounder (SSMIS) calibration and Earth scene fields-of-view (FOV) are examined using sensor diagnostic modes, a graphic simulation of the SSMIS and spacecraft vehicle, and an electromagnetic analysis of the SSMIS antenna. The on-orbit FOV for each calibration target was found to be larger than the sample locations utilized by the flight software for calibration suggesting that additional observing time for the each target is available. The optimum calibration sampling location appears to be slightly offset from the current sampling. However, it is not expected that this will result in degraded performance. The SSMIS Earth scene FOV was found to have noticeable edge-of-scan biases for several channels. The biases were examined and determined to be due to intrusions of the antenna feed FOVs of the main reflector antenna caused by the SSMIS calibration targets and their associated multilayer insulation (MLI) blanketing in the final flight configuration. A simple algorithm to address the edge-of-scan biases is applied and found to correct the biases to within ~0.1-0.2 K.
Keywords
aerospace instrumentation; calibration; geophysical equipment; geophysical techniques; radiometry; remote sensing; DMSP F-16; SSMIS Earth scene FOV; SSMIS antenna; SSMIS calibration targets; SSMIS fields-of-view; Special Sensor Microwave Imager/Sounder fields-of-view; calibration sampling location; electromagnetic analysis; flight software; graphic simulation; multilayer insulation blanketing; reflector antenna; sensor diagnostic modes; Acoustic sensors; Calibration; Earth; Image analysis; Image sensors; Layout; Microwave sensors; Reflector antennas; Sampling methods; Space vehicles; Calibration; microwave radiometry;
fLanguage
English
Journal_Title
Geoscience and Remote Sensing, IEEE Transactions on
Publisher
ieee
ISSN
0196-2892
Type
jour
DOI
10.1109/TGRS.2008.917133
Filename
4475706
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