DocumentCode :
1785059
Title :
Global Precipitation Measurement (GPM) microwave imager (GMI) pre-flight noise diode calibration
Author :
Draper, David ; Newell, David
Author_Institution :
Ball Aerosp. & Technol. Corp., Boulder, CO, USA
fYear :
2014
fDate :
24-27 March 2014
Firstpage :
167
Lastpage :
170
Abstract :
The GMI employs a unique dual calibration system. Unlike other microwave imagers, the GMI noise diodes on the lower frequency channels as well as black-body hot and cold sky views providing four calibration points rather than two. The dual calibration system enables on-board trending of non-linearity, as well independent cross-checking of each calibration element for stability and anomalous behavior. One important benefit of the dual calibration system is the direct evaluation of noise diode behavior on-orbit. For systems that depend solely on noise diodes for calibration, validation of the noise diode performance has to be done vicariously, using the earth as the reference. This paper presents the pre-flight and early on-orbit calibration performance of the noise diodes. We address stability of the noise diodes, and draw conclusions of continued on-orbit noise diode performance based on the ground and early flight measurements.
Keywords :
atmospheric measuring apparatus; atmospheric techniques; calibration; GMI noise diodes; GPM GMI pre-flight noise diode calibration; Global Microwave Imager; Global Precipitation Measurement; black-body cold sky view; black-body hot sky view; dual calibration system; microwave imagers; noise diode behavior on-orbit direct evaluation; unique dual calibration system; Calibration; Extraterrestrial measurements; Instruments; Land surface temperature; Noise; Temperature measurement; Thermal stability; GMI; calibration; noise diodes; radiometer; thermal vacuum;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Microwave Radiometry and Remote Sensing of the Environment (MicroRad), 2014 13th Specialist Meeting on
Conference_Location :
Pasadena, CA
Print_ISBN :
978-1-4799-4645-7
Type :
conf
DOI :
10.1109/MicroRad.2014.6878932
Filename :
6878932
Link To Document :
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