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http://dx.doi.org/10.7780/kjrs.2010.26.2.251

Prelaunch Study of Validation for the Geostationary Ocean Color Imager (GOCI)  

Ryu, Joo-Hyung (Korea Ocean Satellite Center, Korean Ocean Research & Development Institute (KORDI))
Moon, Jeong-Eon (Korea Ocean Satellite Center, Korean Ocean Research & Development Institute (KORDI))
Son, Young-Baek (Korea Ocean Satellite Center, Korean Ocean Research & Development Institute (KORDI))
Cho, Seong-Ick (Korea Ocean Satellite Center, Korean Ocean Research & Development Institute (KORDI))
Min, Jee-Eun (Korea Ocean Satellite Center, Korean Ocean Research & Development Institute (KORDI))
Yang, Chan-Su (Korea Ocean Satellite Center, Korean Ocean Research & Development Institute (KORDI))
Ahn, Yu-Hwan (Korea Ocean Satellite Center, Korean Ocean Research & Development Institute (KORDI))
Shim, Jae-Seol (Climate Change & Coastal Disaster Department, Korean Ocean Research & Development Institute (KORDI))
Publication Information
Korean Journal of Remote Sensing / v.26, no.2, 2010 , pp. 251-262 More about this Journal
Abstract
In order to provide quantitative control of the standard products of Geostationary Ocean Color Imager (GOCI), on-board radiometric correction, atmospheric correction, and bio-optical algorithm are obtained continuously by comprehensive and consistent calibration and validation procedures. The calibration/validation for radiometric, atmospheric, and bio-optical data of GOCI uses temperature, salinity, ocean optics, fluorescence, and turbidity data sets from buoy and platform systems, and periodic oceanic environmental data. For calibration and validation of GOCI, we compared radiometric data between in-situ measurement and HyperSAS data installed in the Ieodo ocean research station, and between HyperSAS and SeaWiFS radiance. HyperSAS data were slightly different in in-situ radiance and irradiance, but they did not have spectral shift in absorption bands. Although all radiance bands measured between HyperSAS and SeaWiFS had an average 25% error, the 11% absolute error was relatively lower when atmospheric correction bands were omitted. This error is related to the SeaWiFS standard atmospheric correction process. We have to consider and improve this error rate for calibration and validation of GOCI. A reference target site around Dokdo Island was used for studying calibration and validation of GOCI. In-situ ocean- and bio-optical data were collected during August and October, 2009. Reflectance spectra around Dokdo Island showed optical characteristic of Case-1 Water. Absorption spectra of chlorophyll, suspended matter, and dissolved organic matter also showed their spectral characteristics. MODIS Aqua-derived chlorophyll-a concentration was well correlated with in-situ fluorometer value, which installed in Dokdo buoy. As we strive to solv the problems of radiometric, atmospheric, and bio-optical correction, it is important to be able to progress and improve the future quality of calibration and validation of GOCI.
Keywords
GOCI; KOSC; Validation; Radiometric correction; Atmospheric correction; Bio-optical correction;
Citations & Related Records
Times Cited By KSCI : 1  (Citation Analysis)
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