1988Proceedings of SPIE, the International Society for Optical Engineering/Proceedings of SPIERequires access

Radiometric Calibration Requirements And Atmospheric Correction

Philip N. Slater

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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.

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Available 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.

Key concepts: Thematic Mapper, Remote sensing, Atmospheric correction, Calibration, Reflectivity, Radiometric dating, Radiometric calibration, Radiometry

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