DocumentCode
1337535
Title
TOPEX microwave radiometer performance evaluation, 1992-1998
Author
Keihm, Stephen J. ; Zlotnicki, Victor ; Ruf, Christopher S.
Author_Institution
Jet Propulsion Lab., California Inst. of Technol., Pasadena, CA, USA
Volume
38
Issue
3
fYear
2000
fDate
5/1/2000 12:00:00 AM
Firstpage
1379
Lastpage
1386
Abstract
The stability and accuracy of the TOPEX Microwave Radiometer (TMR) measurement of the atmospheric path delay due to water vapor is assessed over the interval from launch (August 1992) through June 1998. Detailed global comparisons are made with path delays derived from the special sensor microwave imager (SSM/I) instruments and a network of 15 island radiosondes. The results provide consistent evidence that the TMR path delay measurements included an instrument-related downward drift of 1.0-1.5 mm/yr between October 1992 and December of 1996. The four-year drift correlates with an upward drift seen in the coldest TMR 18-GHz brightness temperature time series and is further supported by independent comparisons of TMR with ERS-1 and 2, GPS, and the Harvest Platform water vapor radiometer measurements. From January 1997 through June 1998, no significant relative path delay drift between TMR and SSM/I is seen in the comparison data, although anomalies do appear in early 1998. In terms of accuracy, both the SSM/I and radiosonde comparisons indicate no significant (>2%) scale error in the TMR path delay. An overall bias of <10 mm mag be present, but the comparisons are not consistent in this determination
Keywords
atmospheric humidity; atmospheric measuring apparatus; geophysical equipment; microwave propagation; millimetre wave propagation; oceanographic equipment; radiometers; remote sensing; remote sensing by radar; spaceborne radar; tropospheric electromagnetic wave propagation; 18 to 37 GHz; AD 1992 to 1998; TOPEX; TOPEX Microwave Radiometer; accuracy; atmosphere; atmospheric path delay; equipment; geophysical measurement technique; humidity; microwave radiometer; ocean; performance; radiowave propagation; remote sensing; satellite instrument; sea level; sea surface topography; stability; troposphere; water vapor; water vapour; Atmospheric measurements; Brightness temperature; Delay; Global Positioning System; Image sensors; Instruments; Microwave measurements; Microwave radiometry; Microwave sensors; Stability;
fLanguage
English
Journal_Title
Geoscience and Remote Sensing, IEEE Transactions on
Publisher
ieee
ISSN
0196-2892
Type
jour
DOI
10.1109/36.843032
Filename
843032
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