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http://dx.doi.org/10.7780/kjrs.2014.30.4.4

Development of relative radiometric calibration system for in-situ measurement spectroradiometers  

Oh, Eunsong (Korea Ocean Satellite Center, Korea Institute of Ocean Science & Technology)
Ahn, Ki-Beom (Korea Ocean Satellite Center, Korea Institute of Ocean Science & Technology)
Kang, Hyukmo (Korea Ocean Satellite Center, Korea Institute of Ocean Science & Technology)
Cho, Seong-Ick (Korea Ocean Satellite Center, Korea Institute of Ocean Science & Technology)
Park, Young-Je (Korea Ocean Satellite Center, Korea Institute of Ocean Science & Technology)
Publication Information
Korean Journal of Remote Sensing / v.30, no.4, 2014 , pp. 455-464 More about this Journal
Abstract
After launching the Geostationary Ocean Color Imager (GOCI) on June 2010, field campaigns were performed routinely around Korean peninsula to collect in-situ data for calibration and validation. Key measurements in the campaigns are radiometric ones with field radiometers such as Analytical Spectral Devices FieldSpec3 or TriOS RAMSES. The field radiometers must be regularly calibrated. We, in the paper, introduce the optical laboratory built in KOSC and the relative calibration method for in-situ measurement spectroradiometer. The laboratory is equipped with a 20-inch integrating sphere (USS-2000S, LabSphere) in 98% uniformity, a reference spectrometer (MCPD9800, Photal) covering wavelengths from 360 nm to 1100 nm with 1.6 nm spectral resolution, and an optical table ($3600{\times}1500{\times}800mm^3$) having a flatness of ${\pm}0.1mm$. Under constant temperature and humidity maintainance in the room, the reference spectrometer and the in-situ measurement instrument are checked with the same light source in the same distance. From the test of FieldSpec3, we figured out a slight difference among in-situ instruments in blue band range, and also confirmed the sensor spectral performance was changed about 4.41% during 1 year. These results show that the regular calibrations are needed to maintain the field measurement accuracy and thus GOCI data reliability.
Keywords
Radiometric calibration; Analytical Spectral Devices (ASD); spectroradiometer;
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Times Cited By KSCI : 2  (Citation Analysis)
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1 Moon, J.-E., Y.-J. Park, J.-H. Ryu, J.-K. Choi, J.-H. Ahn, J.-E. Min, Y.-B. Son, S.-J. Lee, H.-J. Han, and Y.-H.Ahn, 2012. Initial validation of GOCI water products against in situ data collected around Korean peninsula for 2010-2011, Ocean Science Journal, 47(3): 261-277.   과학기술학회마을   DOI
2 Richards, J.A. and X. Jia, 1999. Remote Sensing Digital Image Analysis, Springer.
3 Schowengerdt, R.A., 2006. Remote Sensing: Models and Methods for Image Processing. Academic press.
4 Zhang, L., C. Huang, T. Wu, F. Zhang, and Q. Tong, 2011. Laboratory calibration of a field imaging spectrometer system. Sensors, 11: 2408-2425.   DOI
5 Hooker, S. and C. McClain, 2000. The calibration and validation of SeaWiFS data, Progress in Oceanography, 45(3): 427-465.   DOI   ScienceOn
6 Bailey, S.W. and P.J. Werdell, 2006. A multi-sensor approach for the on-orbit validation of ocean color satellite data products, Remote Sensing of Environment, 102(1): 12-23.   DOI
7 Bassani, C., R.M. Cavalli, A. Palombo, S. Pignatti, and F. Madonna, 2006. Laboratory activity for a new procedure of MIVIS calibration and relative validation with test data, Annals of Geophysics, 49(1): 45-56.
8 Huang, C., L. Zhang, J. Fang, and Q. Tong, 2013. A radiometric calibration model for the field imaging spectrometer system, Geoscience and Remote Sensing, IEEE Transactions on, 51(4): 2465-2475.   DOI
9 Gege, P., J. Fries, P. Haschberger, P. Schotz, H. Schwarzer, P. Strobl, B. Suhr, G. Ulbrich, and W.J. Vreeling, 2009. Calibration facility for airborne imaging spectrometers. ISPRS Journal of Photogrammetry and Remote Sensing, 64: 387-397.   DOI
10 Lee, M.S., K.A. Park, J.Y. Chung, Y.H. Ahn, and J.E. Moon, 2011. Estimation of Coastal Suspended Sediment Concentration using Satellite Data and Oceanic In-Situ Measurements, Korean Journal of Remote Sensing, 27(6): 677-689.   과학기술학회마을   DOI
11 Mobley, C.D., 1999. Estimation of the remote-sensing reflectance from above-surface measurements, Applied Optics, 38(36): 7442-7455.   DOI