DocumentCode
1554174
Title
The FengYun-3 Microwave Radiation Imager On-Orbit Verification
Author
Yang, Hu ; Weng, Fuzhong ; Lv, Liqing ; Lu, Naimeng ; Liu, Gaofeng ; Bai, Ming ; Qian, Qiaoyuan ; He, Jiakai ; Xu, Hongxin
Author_Institution
Nat. Satellite Meteorol. Center, Beijing, China
Volume
49
Issue
11
fYear
2011
Firstpage
4552
Lastpage
4560
Abstract
The Microwave Radiation Imager (MWRI) on board the FengYun-3A/B satellites observes the Earth atmosphere at 10.65, 18.7, 23.8, 36.5, and 89.0 GHz with each having dual polarization. Its calibration system is uniquely designed with a main reflector viewing both cold and hot calibration targets. Two quasi-optical reflectors are used to reflect the radiation from the hot load and cold space to the main reflector. In the MWRI calibration process, a radiation loss in the beam transmission path must be taken into account. The loss factor in the hot load transmission path is derived using the antenna pattern data measured on ground and satellite data observing over the Amazon forest where the scene temperature is steady and close to the hot load. The instrument nonlinearity factors at different channels are also evaluated over a wide range of brightness temperatures and compared with the results from the ground vacuum test. After a cross-calibration with Windsat data, atmospheric products are derived from MWRI brightness temperatures with the accuracy similar to those from the legacy sensors (e.g., the Special Sensor Microwave/Imager).
Keywords
antenna radiation patterns; atmospheric measuring apparatus; calibration; vegetation; Amazon forest; FengYun-3 microwave radiation imager onorbit verification; FengYun-3A satellites; FengYun-3B satellites; MWRI brightness temperatures; MWRI calibration process; Windsat data; antenna pattern data; atmospheric products; beam transmission path; calibration system; cold calibration target; ground vacuum test; hot calibration target; hot load transmission path; instrument nonlinearity factors; quasioptical reflectors; radiation loss; scene temperature; Calibration; Earth; Feeds; Instruments; Receivers; Satellite broadcasting; Satellites; Calibration; FengYun (FY)-3; microwave radiometer; remote sensing;
fLanguage
English
Journal_Title
Geoscience and Remote Sensing, IEEE Transactions on
Publisher
ieee
ISSN
0196-2892
Type
jour
DOI
10.1109/TGRS.2011.2148200
Filename
5876315
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