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NTIS 바로가기대한원격탐사학회지 = Korean journal of remote sensing, v.37 no.5 pt.2, 2021년, pp.1229 - 1234
최종국 (한국해양과학기술원 해양위성센터) , 박명숙 (한국해양과학기술원 해양위성센터) , 한경수 (부경대학교 지구환경시스템과학부 공간정보시스템공학과) , 김현철 (극지연구소 원격탐사빙권정보센터) , 임정호 (울산과학기술원 도시환경공학과)
GOCI-II, which succeeded the mission of GOCI, was successfully launched in February 2020 and is in operation. GOCI-II is expected to be highly useful in a wide range of fields, including detailed changes in the coastal seawater environment using improved spatial and spectral resolution, increased nu...
Choi, J.K., J.E. Min, J.H. Noh, T.H. Han, S. Yoon, Y.J. Park, J.E. Moon, J.H. Ahn, S.M. Ahn, and J.H. Park, 2014a. Harmful algal bloom (HAB) in the East Sea identified by the Geostationary Ocean Color Imager (GOCI), Harmful Algae, 39: 295-302.
Choi, J.K., Y.J. Park, J.H. Ahn, H.S. Lim, J. Eom, and J.-H. Ryu, 2012. GOCI, the world's first geostationary ocean color observation satellite, for the monitoring of temporal variability in coastal water turbidity, Journal of Geophysical Research: Oceans, 117(9): 1-10.
Choi, J.-K., Y.J. Park, B.R. Lee, J. Eom, J.-E. Moon, and J.-H. Ryu, 2014b. Application of the Geostationary Ocean Color Imager (GOCI) to mapping the temporal dynamics of coastal water turbidity, Remote Sensing of Environment, 146: 24-35.
Kim, D.-W., Y.-H. Jo, J.-K. Choi, J.-G. Choi, and H. Bi, 2016. Physical processes leading to the development of an anomalously large Cochlodinium polykrikoides bloom in the East sea/Japan sea, Harmful Algae, 55: 250-258.
Park, M.-S., H.-C. Jung, S.-J. Lee, J.-H. Ahn, S.-J. Bae, and J.-K. Choi, 2021. The GOCI-II early mission ocean color products in comparison with the GOCI toward the continuity of Chollian multisatellite ocean color data, Korean Journal of Remote Sensing, 37(5-2): 1281-1293 (in Korean with English abstract).
Yang, H., J.-K. Choi, Y.-J. Park, H.-J. Han, and J.-H. Ryu, 2014. Application of the Geostationary Ocean Color Imager (GOCI) to estimates of ocean surface currents, Journal of Geophysical Research: Oceans, 119(6): 3988-4000.
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