Forecast Impact of FORMOSAT‐7/COSMIC‐2 GNSS Radio Occultation Measurements

[1]  S. Healy,et al.  Improving the bias characteristics of the ROPP refractivity and bending angle operators , 2014 .

[2]  R. Treadon,et al.  Assimilation of Global Positioning System Radio Occultation Observations into NCEP’s Global Data Assimilation System , 2007 .

[3]  Jean-Noël Thépaut,et al.  Assimilation experiments with CHAMP GPS radio occultation measurements , 2006 .

[4]  D. Hunt,et al.  COSMIC‐2 Radio Occultation Constellation: First Results , 2020, Geophysical Research Letters.

[5]  Paul Poli,et al.  Assimilation of Global Positioning System radio occultation data in the ECMWF ERA–Interim reanalysis , 2010 .

[6]  Heikki Järvinen,et al.  Variational quality control , 1999 .

[7]  Peter Bauer,et al.  GNSS Radio Occultation Constellation Observing System Experiments , 2014 .

[8]  Mats Hamrud,et al.  Assimilating GPS radio occultation measurements with two‐dimensional bending angle observation operators , 2007 .

[9]  Richard A. Anthes,et al.  Radio occultation observations as anchor observations in numerical weather prediction models and associated reduction of bias corrections in microwave and infrared satellite observations , 2014 .

[10]  H. W. Lewis,et al.  The Radio Occultation Processing Package, ROPP , 2015 .

[11]  A. von Engeln,et al.  Validation of operational GRAS radio occultation data , 2009 .

[12]  S. Healy,et al.  Impact of GPS radio occultation measurements in the ECMWF system using adjoint‐based diagnostics , 2014 .

[13]  Dick Dee,et al.  On the choice of variable for atmospheric moisture analysis , 2022 .