Radiometric Calibration Assessment of Commercial High Spatial Resolution Multispectral Image Products
Kara Holekamp, David Aaron, Kurtis J. Thome
Abstract
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Kara Holekamp, David Aaron, Kurtis J. Thome
Abstract
Open-access reader
Radiometric calibration of commercial imaging satellite products is required to ensure that science and application communities can better understand their properties. Inaccurate radiometric calibrations can lead to erroneous decisions and invalid conclusions and can limit intercomparisons with other systems. To address this calibration need, satellite at-sensor radiance values were compared to those estimated by each independent team member to determine the sensor's radiometric accuracy. The combined results of this evaluation provide the user community with an independent assessment of these commercially available high spatial resolution sensors' absolute calibration values.
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Radiometric calibration of commercial imaging satellite products is required to ensure that science and application communities can better understand their properties. Inaccurate radiometric calibrations can lead to erroneous decisions and invalid conclusions and can limit intercomparisons with other systems. To address this calibration need, satellite at-sensor radiance values were compared to those estimated by each independent team member to determine the sensor's radiometric accuracy. The combined results of this evaluation provide the user community with an independent assessment of these commercially available high spatial resolution sensors' absolute calibration values.
Key concepts: Remote sensing, Radiance, Radiometric calibration, Multispectral image, Calibration, Radiometry, Radiometric dating, Satellite