DocumentCode
1187871
Title
Landsat-5 TM reflective-band absolute radiometric calibration
Author
Chander, Gyanesh ; Helder, Dennis L. ; Markham, Brian L. ; Dewald, James D. ; Kaita, Ed ; Thome, Kurtis J. ; Micijevic, Esad ; Ruggles, Timothy A.
Author_Institution
Earth Resources Obs. Syst. Data Center, Sci. Applic. Int. Corp., Sioux Falls, SD, USA
Volume
42
Issue
12
fYear
2004
Firstpage
2747
Lastpage
2760
Abstract
The Landsat-5 Thematic Mapper (TM) sensor provides the longest running continuous dataset of moderate spatial resolution remote sensing imagery, dating back to its launch in March 1984. Historically, the radiometric calibration procedure for this imagery used the instrument´s response to the Internal Calibrator (IC) on a scene-by-scene basis to determine the gain and offset of each detector. Due to observed degradations in the IC, a new procedure was implemented for U.S.-processed data in May 2003. This new calibration procedure is based on a lifetime radiometric calibration model for the instrument´s reflective bands (1-5 and 7) and is derived, in part, from the IC response without the related degradation effects and is tied to the cross calibration with the Landsat-7 Enhanced Thematic Mapper Plus. Reflective-band absolute radiometric accuracy of the instrument tends to be on the order of 7% to 10%, based on a variety of calibration methods.
Keywords
calibration; geophysical equipment; radiometry; remote sensing by radar; vegetation mapping; AD 1984 03; AD 2003 05; Enhanced Thematic Mapper Plus; IC degradations; IC response; Landsat-5; Landsat-7; Thematic Mapper sensor; absolute radiometric accuracy; absolute radiometric calibration; calibration procedure; cross calibration; degradation effects; detector gain; detector offset; internal calibrator; lifetime radiometric calibration model; lookup table; radiometry; reflectance; reflective bands; relative spectral response; remote sensing imagery; spatial resolution; Calibration; Degradation; Detectors; Image sensors; Instruments; Integrated circuit modeling; Radiometry; Remote sensing; Satellites; Spatial resolution;
fLanguage
English
Journal_Title
Geoscience and Remote Sensing, IEEE Transactions on
Publisher
ieee
ISSN
0196-2892
Type
jour
DOI
10.1109/TGRS.2004.836388
Filename
1369371
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