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FY-3A/MERSI, ocean color algorithm, products and demonstrative applications
作者姓名:SUN Ling  GUO Maohu  ZHU Jianhu  HU Xiuqing  SONG Qingjun
作者单位:Key Laboratory of Radiometric Calibration and Validation for Environmental Satellites, ChinaMeteorological Administration (LRCVES/CMA), Beijing 100081, China;National SatelliteMeteorological Centre, ChinaMeteorological Administration, Beijing 100081, China;National Satellite Ocean Application Service, State Oceanic Administration, Beijing 100081, China;National Ocean Technology Centre, State Oceanic Administration, Tianjin 300112, China;Key Laboratory of Radiometric Calibration and Validation for Environmental Satellites, ChinaMeteorological Administration (LRCVES/CMA), Beijing 100081, China;National SatelliteMeteorological Centre, ChinaMeteorological Administration, Beijing 100081, China;National Satellite Ocean Application Service, State Oceanic Administration, Beijing 100081, China
基金项目:TheNational Basic Research Program(973 Program) of China under contract No. 2010CB950803; NationalMeteorological Special Project of China under contract No. GYHY200906036.
摘    要:A medium resolution spectral imager (MERSI) on-board the first spacecraft of the second generation of China’s polar-orbit meteorological satellites FY-3A, is a MODIS-like sensor with 20 bands covering visible to thermal infrared spectral region. FY-3A/MERSI is capable of making continuous global observations, and ocean color application is one of its main targets. The objective is to provide information about the ocean color products of FY-3A/MERSI, including sensor calibration, ocean color algorithms, ocean color products validation and applications. Although there is a visible on-board calibration device, it cannot realize the on-board absolute radiometric calibration in the reflective solar bands. A multisite vicarious calibration method is developed, and used for monitoring the in-flight response change and providing post-launch calibration coefficients updating. FY-3A/MERSI ocean color products consist of the water-leaving reflectance retrieved from an atmospheric correction algorithm, a chlorophyll a concentration (CHL1) and a pigment concentration (PIG1) from global empirical models, the chlorophyll a concentration (CHL2), a total suspended mater concentration (TSM) and the absorption coefficient of CDOM and NAP (YS443) from China’s regional empirical models. The atmospheric correction algorithm based on lookup tables and ocean color components concentration estimation models are described. By comparison with in situ data, the FY-3A/MERSI ocean color products have been validated and preliminary results are presented. Some successful ocean color applications such as algae bloom monitoring and coastal suspended sediment variation have demonstrated the usefulness of FY-3A/MERSI ocean color products.

关 键 词:FY-3A/MERSI  ocean  color  multisite  calibration  atmospheric  correction  China’s  regional  model
收稿时间:2011/4/26 0:00:00
修稿时间:2012/5/28 0:00:00

FY-3A/MERSI, ocean color algorithm, products and demonstrative applications
SUN Ling,GUO Maohu,ZHU Jianhu,HU Xiuqing,SONG Qingjun.FY-3A/MERSI, ocean color algorithm, products and demonstrative applications[J].Acta Oceanologica Sinica,2013,32(5):75-81.
Authors:SUN Ling  GUO Maohu  ZHU Jianhu  HU Xiuqing and SONG Qingjun
Institution:1.Key Laboratory of Radiometric Calibration and Validation for Environmental Satellites, China Meteorological Administration(LRCVES/CMA), Beijing 100081, China;National Satellite Meteorological Centre, China Meteorological Administration, Beijing 100081, China2.National Satellite Ocean Application Service, State Oceanic Administration, Beijing 100081, China3.National Ocean Technology Centre, State Oceanic Administration, Tianjin 300112, China
Abstract:A medium resolution spectral imager (MERSI) on-board the first spacecraft of the second generation of China’s polar-orbit meteorological satellites FY-3A, is a MODIS-like sensor with 20 bands covering visible to thermal infrared spectral region. FY-3A/MERSI is capable of making continuous global observations, and ocean color application is one of its main targets. The objective is to provide information about the ocean color products of FY-3A/MERSI, including sensor calibration, ocean color algorithms, ocean color products validation and applications. Although there is a visible on-board calibration device, it cannot realize the on-board absolute radiometric calibration in the reflective solar bands. A multisite vicarious calibration method is developed, and used for monitoring the in-flight response change and providing post-launch calibration coefficients updating. FY-3A/MERSI ocean color products consist of the water-leaving reflectance retrieved from an atmospheric correction algorithm, a chlorophyll a concentration (CHL1) and a pigment concentration (PIG1) from global empirical models, the chlorophyll a concentration (CHL2), a total suspended mater concentration (TSM) and the absorption coefficient of CDOM and NAP (YS443) from China’s regional empirical models. The atmospheric correction algorithm based on lookup tables and ocean color components concentration estimation models are described. By comparison with in situ data, the FY-3A/MERSI ocean color products have been validated and preliminary results are presented. Some successful ocean color applications such as algae bloom monitoring and coastal suspended sediment variation have demonstrated the usefulness of FY-3A/MERSI ocean color products.
Keywords:FY-3A/MERSI  ocean color  multisite calibration  atmospheric correction  China's regional model
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