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  1. Atlas, D., S. Y. Matrosov, A. J. Heymsfield, M.-D. Chou, and D. B. Wolff (1995), Radar and Radiation Properties of Ice CloudsJ. Appl. Meteorol., 34, 2329–2345.
  2. Bezy, J.-L., W. Leibrandt, A. Heliere, P. Silvestrin, C.-C. Lin, P. Ingmann, T. Kimura, and H. Kumagai (2005), The ESA Earth Explorer EarthCARE missionProc. of SPIE, 5882, 58820F, doi:10.1117/12.619438.
  3. Comstock, J. M., R. D. Entremont, D. DeSlover, G. G. Mace, S. Y. Matrosov, S. A. McFarlane, P. Minnins, D. Mitchell, K. Sassen, M. D. Shupe, D. D. Turner, and Z. Wang (2007), An Intercomparison of Microphysical Retrieval Algorithms for Upper-Tropospheric Ice CloudsBull. Amer. Met. Soc., 191–204, doi:10.1175/BAMS-88-2-191.
  4. Cumming, I. G. and F. H. Wong (2005), Digital Processing of Synthetic Aperture Radar Data, Artech House, ISBN 978-1-58053-058-3.
  5. Deng, M., G. G. Mace, Z. Wang, and H. Okamoto (2010), Tropical Composition, Cloud and Climate Coupling Experiment validation for cirrus cloud profiling retrieval using CloudSat radar and CALIPSO lidarJ. Geophys. Res., 115, D00J15, doi:10.1029/2009JD013104.
  6. Deng, M., G. G. Mace, Z. Wang, and R. P. Lawson (2013), Evaluation of Several A-Train Ice Cloud Retrieval Products with In Situ Measurements Collected during the SPARTICUS CampaignJ. Appl. Meteorol. Clim., 52(4), 1014–1030, doi:10.1175/JAMC-D-12-054.1.
  7. Grecu, M., W. S. Olson, S. J. Munchak, S. Ringerud, L. Liao, Z. Haddad, B. L. Kelley, and S. F. McLaughlin (2016), The GPM Combined AlgorithmJ. Atmos. Oceanic Technol., 33(10), 2225–2245, doi:10.1175/JTECH-D-16-0019.1.
  8. Hamada, A., N. Nishi, S. Iwasaki, Y. Ohno, H. Kumagai, and H. Okamoto (2008), Cloud Type and Top Height Estimation for Tropical Upper-Tropospheric Clouds Using GMS-5 Split-Window Measurements Combined with Cloud Radar MeasurementsSci. Onl. Let. Atm., 4, 57–60, doi:10.2151/sola.2008-015.
  9. Haynes, John M., Tristan S. L'Ecuyer, Graeme L. Stephens, Steven D. Miller, Cristian Mitrescu, Norman B. Wood, and Simone Tanelli (2009), Rainfall retrieval over the ocean with spaceborne W-band radarJ. Geophys. Res., 114, D00A22, doi:10.1029/2008JD009973.
  10. Heymsfield, A. J., Z. Wang, and S. Matrosov (2005), Improved Radar Ice Water Content Retrieval Algorithms Using Coincident Microphysical and Radar MeasurementsJ. Appl. Meteorol., 44, 1391–1412, doi:10.1175/JAM2282.1.
  11. Hong, G. (2007), Radar backscattering properties of nonspherical ice crystals at 94 GHzGeophys. Res. Lett., 112, D22203, doi:10.1029/2007JD008839.
  12. Iguchi, T., T. Kozu, R. Meneghini, J. Awaka, and K. Okamoto (2000), Rain-Profiling Algorithm for the TRMM Precipitation RadarJ. Appl. Meteorol., 39(12), 2038–2052, doi:10.1175/1520-0450(2001)040<2038:RPAFTT>2.0.CO;2.
  13. L'Ecuyer, T. S. and J. H. Jiang (2010), Touring the atmosphere aboard the A-TrainPhys. Today, 63(7), 36–41.
  14. Li, L., G. M. Heymsfield, L. Tian, and P. E. Racette (2005), Measurements of Ocean Surface Backscattering Using an Airborne 94-GHz Cloud Radar—Implication for Calibration of Airborne and Spaceborne W-Band RadarsJ. Atmos. Oceanic Technol., 22, 1033–1045, doi:10.1175/JTECH1722.1.
  15. Marzano, F. S., M. Lamantea, M. Montopoli, S. Di Fabio, and E. Picciotti (2011), The Eyjafjöll explosive volcanic eruption from a microwave weather radar perspectiveAtmos. Chem. Phys. Discuss., 12367–12409, doi:10.5194/acpd-11-12367-2011.
  16. Masunaga, H. and C. D. Kummerow (2005), Combined Radar and Radiometer Analysis of Precipitation Profiles for a Parametric Retrieval AlgorithmJ. Atmos. Oceanic Technol., 22, 909–929, doi:10.1175/JTECH1751.1.
  17. Molthan, A. L. and W. A. Petersen (2011), Incorporating Ice Crystal Scattering Databases in the Simulation of Millimeter-Wavelength Radar ReflectivityJ. Atmos. Oceanic Technol., 28, 337–351, doi:10.1175/2010JTECHA1511.1.
  18. Munchak, S. J. and C. D. Kummerow (2011), A Modular Optimal Estimation Method for Combined Radar-Radiometer Precipitation ProfilingJ. Appl. Meteorol. Clim., 50(2), 433–448, doi:10.1175/2010JAMC2535.1.
  19. Okamoto, H., K. Sato, and Y. Hagihara (2010), Global analysis of ice microphysics from CloudSat and CALIPSO: Incorporation of specular reflection in lidar signalsJ. Geophys. Res., 115, D22209, doi:10.1029/2009JD013383.
  20. Oliver, C. and S. Quegan (2004), Understanding Synthetic Aperture Radar Images, SciTech Publishing, Inc., ISBN 1-891121-31-6.
  21. Stimson, G. W. (1998), Introduction to Airborne Radar, SciTech Publishing, Inc., ISBN 1-891121-01-4.
  22. Sun, W., Y. Hu, B. Lin, Z. Liu, and G. Videen (2011), The impact of ice cloud particle microphysics on the uncertainty of ice water content retrievalsJ. Quant. Spectrosc. Radiat. Transfer, 112(2), 189–196, doi:10.1016/j.jqsrt.2010.04.003.
  23. Tanelli, S., S. L. Durden, E. Im, K. S. Pak, D. G. Reinke, P. Partain, J. M. Haynes, and R. T. Marchand (2008), CloudSat's Cloud Profiling Radar after Two Years in Orbit: Performance, Calibration, and ProcessingIEEE T. Geosci. Remote, 46(11), 3560–3573.
  24. Thies, B. and J. Bendix (2011), Satellite based remote sensing of weather and climate: recent achievements and future perspectivesMet. Appl., 18, 262–295, doi:10.1002/met.288.