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Global 0.25-degree gridded Snow water equivalent data derived from machine learning using in-situ measurements. [PDF]
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Quantification of <sup>10</sup>B and <sup>11</sup>B in Biological Samples in Translational Science and Clinical Applications for Boron Neutron Capture Therapy (BNCT). [PDF]
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Adaptation and Response in Drylands: A Dryland Research Agenda and Campaign Strategy. [PDF]
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In-Orbit Calibration of FengYun-3C Microwave Radiation Imager: Nonlinearity Correction
IEEE Transactions on Geoscience and Remote Sensing, 2021FengYun-3C (FY-3C) is the second-generation polar-orbiting meteorological satellite in China. As one of the most important microwave payloads deployed onboard FY-3C, microwave radiation imager (MWRI) has been continuously observing radiance originating from land and sea surface and supports numerical weather predictions at regional and global scales ...
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The FengYun-3 Microwave Radiation Imager On-Orbit Verification
IEEE Transactions on Geoscience and Remote Sensing, 2011The 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.
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Environmental Data Records From FengYun-3B Microwave Radiation Imager
IEEE Transactions on Geoscience and Remote Sensing, 2012Microwave Radiation Imagers (MWRIs) onboard the FengYun (FY)-3A/B satellites of China Meteorological Administration were launched on May 28, 2008, and November 5, 2010, respectively. They both observe the Earth atmosphere and land surface at 10.65, 18.7, 23.8, 36.5, and 89.0 GHz with dual polarization.
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Along-Scan Bias of Fengyun-3c Microwave Radiation Imager
IGARSS 2019 - 2019 IEEE International Geoscience and Remote Sensing Symposium, 2019In this study, along-scan performance of FengYun-3C microwave radiation imager (MWRI) is examined utilizing one-year data over ocean. Generally-good uniformity along azimuth scan position is found with a TB bias less than 1 K at the edge-of-scan. However, discernible errors can be still found and the behaviors of the scan-position-dependent bias are ...
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Estimation and Correction of Geolocation Errors in FengYun-3C Microwave Radiation Imager Data
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