Radiometric Calibration Requirements And Atmospheric Correction
Philip N. Slater
Abstract
Philip N. Slater
Abstract
The need for independent, redundant absolute radiometric calibration methods is discussed with reference to the Thematic Mapper. Uncertainty requirements for absolute calibration of between 0.5% and 4% are defined based on the accuracy of reflectance retrievals at an agricultural site. It is shown that even very approximate atmospheric corrections can reduce the error in reflectance retrie-val to 0.02 over the reflectance range 0 to 0.4.
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The need for independent, redundant absolute radiometric calibration methods is discussed with reference to the Thematic Mapper. Uncertainty requirements for absolute calibration of between 0.5% and 4% are defined based on the accuracy of reflectance retrievals at an agricultural site. It is shown that even very approximate atmospheric corrections can reduce the error in reflectance retrie-val to 0.02 over the reflectance range 0 to 0.4.
Key concepts: Thematic Mapper, Remote sensing, Atmospheric correction, Calibration, Reflectivity, Radiometric dating, Radiometric calibration, Radiometry