Title :
Estimation of the directional reflectance in Middle Infra-Red channel from SVISSR/FY-2C data
Author :
Qian, Yonggang ; Qiu, Shi ; Wang, Ning ; Wu, Hua ; Kong, Xiangsheng ; Wang, Xinhong ; Liu, Yaokai ; Jia, Yuan-Yuan ; Li, Zhao-Liang ; Tang, Lingli ; Li, Chuanrong
Author_Institution :
Acad. of Opto-Electron., Beijing, China
Abstract :
This work addressed the estimation of the directional reflectance in Middle Infra-Red (MIR) channel from the data acquired by the Stretched Visible and Infrared Spin Scan Radiometer (SVISSR) onboard Chinese geostationary Meteorological satellite FengYun 2C (FY-2C). SVISSR/FY-2C sensor acquires image covering the whole disk with a temporal resolution of 30 minutes. The MIR directional reflectance retrieval procedure can be seen as follows. Firstly, the atmospheric profiles data provided by European Centre for Medium-Range Weather Forecasts (ECMWF) were used to correct atmospheric influence with the radiative transfer code (MODTRAN 4.0). Secondly, the bi-directional reflectance in SVISSR/FY-2C MIR channel 4 (3.8 micron) was estimated from the combined MIR and TIR channel with day-night SVISSR/FY-2C data. Finally, a BRDF model referred to as the RossThick-LiSparse-R model was used to estimate the directional reflectance in MIR channel from the time-series bi-directional reflectance data. The results have been demonstrated that the method can be applied well to estimate the directional reflectance in MIR channel of SVISSR/FY-2C sensor.
Keywords :
atmospheric techniques; radiative transfer; weather forecasting; BRDF model; Chinese geostationary Meteorological satellite; European Centre for Medium-Range Weather Forecasts; FY-2C data; FengYun 2C sensor; RossThick-LiSparse-R model; SVISSR data; atmospheric profiles data; directional reflectance; infrared spin scan radiometer; middle infra-red channel; radiative transfer code; stretched visible scan radiometer; Atmospheric modeling; Bidirectional control; Channel estimation; Data models; Kernel; Land surface; Reflectivity; Atmospheric correction; Directional reflectance; FY-2C; TISI;
Conference_Titel :
Geoscience and Remote Sensing Symposium (IGARSS), 2012 IEEE International
Conference_Location :
Munich
Print_ISBN :
978-1-4673-1160-1
Electronic_ISBN :
2153-6996
DOI :
10.1109/IGARSS.2012.6352473