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TUP1.PS.1: A MACHINE LEARNING FRAMEWORK FOR REAL DATA GNSS-R WIND SPEED RETRIEVAL
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Yunxiang Liu; University of Colorado Boulder |
Jun Wang; University of Colorado Boulder |
Ian Collett; University of Colorado Boulder |
Jade Morton; University of Colorado Boulder |
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TUP1.PS.2: A ‘TRACK-WISE’ WIND RETRIEVAL ALGORITHM FOR THE CYGNSS MISSION
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Faozi Said; National Oceanic and Atmospheric Administration / Global Science & Technology |
Zorana Jelenak; National Oceanic and Atmospheric Administration / UCAR |
Jeonghwang Park; National Oceanic and Atmospheric Administration / Global Science & Technology |
Seubson Soisuvarn; National Oceanic and Atmospheric Administration / UCAR |
Paul Chang; National Oceanic and Atmospheric Administration |
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TUP1.PS.3: IMPACT OF SPECULAR POINT ESTIMATION INACCURACIES ON TECHODEMOSAT-1 GNSS-REFLECTOMETRY OBSERVABLES OVER OCEANS
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Giuseppe Grieco; Royal Dutch Meteorological Institute |
Ad Stoffelen; Royal Dutch Meteorological Institute |
Marcos Portabella; Marine Science Institute (ICS-CSIC) |
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TUP1.PS.4: A PATCH MODEL BASED ON NUMERICAL SOLUTIONS OF MAXWELL EQUATIONS FOR GNSS-R LAND APPLICATIONS
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Jiyue Zhu; University of Michigan |
Leung Tsang; University of Michigan |
Haokui Xu; University of Michigan |
Weihui Gu; University of Michigan |
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TUP1.PS.5: ON-ORBIT TRENDING OF CYGNSS DATA
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Darren McKague; University of Michigan |
Christopher Ruf; University of Michigan |
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TUP1.PS.6: A REAL-TIME EIRP LEVEL 1 CALIBRATION ALGORITHM FOR THE CYGNSS MISSION USING THE ZENITH MEASUREMENTS
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Tianlin Wang; University of Michigan |
Christopher Ruf; University of Michigan |
Scott Gleason; University Corporation for Atmospheric Research |
Bruce Block; University of Michigan |
Darren McKague; University of Michigan |
Andrew O’Brien; Ohio State University |
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TUP1.PS.7: THE PSEUDO MONOSTATIC POINT FOR GNSS-R
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Benjamin Southwell; ACSER, University of New South Wales |
Andrew Dempster; ACSER, University of New South Wales |
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TUP1.PS.8: AN ADAPTIVE WINDOW FOR GNSS-R STARE PROCESSING
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Benjamin Southwell; ACSER, University of New South Wales |
Andrew Dempster; ACSER, University of New South Wales |
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TUP1.PS.9: COHERENT REFLECTIONS USING CLOSED-LOOP PLL PROCESSING OF CYGNSS IF DATA
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Yang Wang; University of Colorado Boulder |
Jade Morton; University of Colorado Boulder |
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TUP1.PS.10: CHARACTERIZATION OF COHERENCE PROPERTIES OF SIGNALS OF OPPORTUNITY OVER LAND SURFACE
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Rashmi Shah; California Institute of Technology, NASA Jet Propulsion Laboratory |
Jade Morton; University of Colorado Boulder |
Yang Wang; University of Colorado Boulder |
Ian Collett; University of Colorado Boulder |
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TUP1.PS.11: GENETIC ALGORITHM BASED GNSS-R SNOW WATER EQUIVALENT ESTIMATION
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Yunwei Li; Wuhan University |
Xin Chang; Wuhan University |
Shuyao Wang; Wuhan University |
Taoyong Jin; Wuhan University |
Kegen Yu; China University of Mining and Technology |
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TUP1.PS.12: DIGITAL SYSTEM DESIGN OF AN AIRBONE L/S/C-BAND MIR(MICROWAVE INTERFEROMETRIC RADIOMETER)
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Tianshu Guo; University of Chinese Academy of Sciences; Key laboratory of Microwave Remote Sensing, National Space Science Center, Chinese Academy of Sciences |
Hao Liu; Key laboratory of Microwave Remote Sensing, National Space Science Center, Chinese Academy of Sciences |
Hao Lu; Key laboratory of Microwave Remote Sensing, National Space Science Center, Chinese Academy of Sciences |
Changxing Huo; Key laboratory of Microwave Remote Sensing, National Space Science Center, Chinese Academy of Sciences |
Lijie Niu; Key laboratory of Microwave Remote Sensing, National Space Science Center, Chinese Academy of Sciences |