Radiometric Cross-Calibration of the Chilean Satellite FASat-C Using RapidEye and EO-1 Hyperion Data and a Simultaneous Nadir Overpass Approach
Author
dc.contributor.author
Barrientos, Carolina
Author
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Mattar Bader, Cristián
Author
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Nakos, Theodoros
Author
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Pérez, Waldo
Admission date
dc.date.accessioned
2017-01-11T20:17:34Z
Available date
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2017-01-11T20:17:34Z
Publication date
dc.date.issued
2016
Cita de ítem
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Remote Sensing. Volumen: 8 Número: 7 Número de artículo: 612 (2016)
es_ES
Identifier
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10.3390/rs8070612
Identifier
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https://repositorio.uchile.cl/handle/2250/142381
Abstract
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The absolute radiometric calibration of a satellite sensor is the critical factor that ensures the usefulness of the acquired data for quantitative applications on remote sensing. This work presents the results of the first cross-calibration of the sensor on board the Sistema Satelital de Observacion de la Tierra (SSOT) Chilean satellite or Air Force Satellite FASat-C. RapidEye-MSI was chosen as the reference sensor, and a simultaneous Nadir Overpass Approach (SNO) was applied. The biases caused by differences in the spectral responses of both instruments were compensated through an adjustment factor derived from EO-1 Hyperion data. Through this method, the variations affecting the radiometric response of New AstroSat Optical Modular Instrument (NAOMI-1), have been corrected based on collections over the Frenchman Flat calibration site. The results of a preliminary evaluation of the pre-flight and updated coefficients have shown a significant improvement in the accuracy of at-sensor radiances and TOA reflectances: an average agreement of 2.63% (RMSE) was achieved for the multispectral bands of both instruments. This research will provide a basis for the continuity of calibration and validation tasks of future Chilean space missions.
es_ES
Patrocinador
dc.description.sponsorship
Space Operations Group (GOE), Aerial Photogrammetric Service (SAF) of the Chilean Air Force (FACH)