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  1. Aires, F., F. Bernardo, H. Brogniez, and C. Prigent (2010), An Innovative Calibration Method for the Inversion of Satellite ObservationsJ. Appl. Meteorol. Clim., 49(12), 2458–2473, doi:10.1175/2010JAMC2435.1.
  2. Austin, R. T. and G. L. Stephens (2001), Retrieval of stratus cloud microphysical parameters using millimeter-wave radar and visible optical depth in preparation for CloudSat 1. Algorithm formulationJ. Geophys. Res., 106(D22), 28,233–28,242.
  3. Austin, R. T., A. J. Heymsfield, and G. L. Stephens (2009), Retrieval of ice cloud microphysical parameters using the CloudSat millimeter-wave radar and temperatureJ. Geophys. Res., 114, D00A23, doi:10.1029/2008JD010049.
  4. Bauer, P. and A. Mugnai (2003), Precipitation profile retrievals using temperature-sounding microwave observationsJ. Geophys. Res., 108(D23), doi:10.1029/2003JD003572.
  5. Baum, B. A., D. P. Kratz, P. Yang, S. C. Ou, Y. X. Hu, P.F. Soulen, and S.-C. Tsay (2000), Remote sensing of cloud properties using MODIS airborne simulator imagery during SUCCESS. 1. Data and modelsJ. Geophys. Res., 105, 11767–11780, doi:10.1029/1999JD901089.
  6. Baum, B. A., P. F. Soulen, K. I. Strabala, M. D. King, S. A. Ackerman, W. P. Menzel, and P. Yang (2000), Remote sensing of cloud properties using MODIS airborne simulator imagery during SUCCESS. 2. Cloud thermodynamic phaseJ. Geophys. Res., 105, 11781–11792, doi:10.1029/1999JD901090.
  7. Baum, B. A. and J. D. Spinhirne (2000), Remote sensing of cloud properties using MODIS airborne simulator imagery during SUCCESS. 3. Cloud overlapJ. Geophys. Res., 105, 11793–11804, doi:10.1029/1999JD901091.
  8. Baum, B. A., B. A. Wielicki, and P. Minnis ans L. Parker (1992), Cloud-Property retrieval Using Merged HIRS and AVHRR DataJ. Appl. Meteorol., 31, 351–369.
  9. Bellisario, Ch., H. E. Brindley, J. E. Murray, A. Last, J. Pickering, R. Ch. Harlow, S. Fox, C. Fox, S. M. Newman, M. Smith, D. Anderson, X. Huang, and X. Chen (2017), Retrievals of the Far Infrared Surface Emissivity Over the Greenland Plateau Using the Tropospheric Airborne Fourier Transform Spectrometer (TAFTS)J. Geophys. Res.: Atm., 122(22), 12152–12166, doi:10.1002/2017JD027328.
  10. Bennartz, R. and U. Lohmann (2001), Impact of improved near infrared water vapor line data on absorption of solar radiation in GCMsGeophys. Res. Lett., 28(24), 4591–4594.
  11. Bennartz, R., A. Thoss, A. Dybbroe, and D. B. Michelson (2002), Precipitation analysis using the Advanced Microwave Sounding Unit in support of nowcasting applicationsMet. Appl., 9, 177–189, doi:10.1017/S1350482702002037.
  12. Bennett, V. L., A. Dudhia, and C. D. Rodgers (1999), Microwindow selection for MIPAS using information content, In: ESAMS '99 European Symposium on Atmospheric Measurements from Space, pp. 265–270, European Space Agency.
  13. Bond, S. T. (1996), The Potential Effect of Cirrus on Microwave Limb Sounder Retrievals, The University of Edinburgh.
  14. Bosisio, A. V. and G. Drufuca (2003), Retrieval of two-dimensional absorption coefficient structure from a scanning radiometer at 23.8 GHzRadio Sci., 38(3), doi:10.1029/2002RS002628.
  15. Bosisio, A. V. and C. Mallet (1998), Influence of cloud temperature on brightness temperature and consequences for water retrievalRadio Sci., 33(4), 929–939.
  16. Cadeddu, M. P., J. C. Liljegren, and A. L. Pazmany (2007), Measurements and Retrievals From a New 183-GHz Water-vapor Radiometer in the ArcticIEEE Geosci. Remote Sens., 45, 2207–2215, doi:10.1109/TGRS.2006.888970.
  17. Chahine, M. T., H. Aumann, M. Goldberg, E. Kalnay, L. McMillin, P. Rosenkranz, D. Staelin, L. Strow, and J. Susskind (1997), AIRS-Team Unified Retrieval for Core Products Level 2, xxxx.
  18. Chambers, L. H. (1997), Computation of the Effects of Inhomogeneous Clouds on Retrieval of Remotely Sensed Properties, NASA Langley Research Center.
  19. Charlock, T. P. and T. L. Alberta (1996), The CERES/ARM/GEWEX Experiment (CAGEX) for the Retrieval of Radiative Fluxes with Satellite DataBull. Amer. Met. Soc., 77(11), 2673–2683.
  20. von Clarmann, T., M. Höpfner, S. Kellmann, A. Linden, S. Chauhan, B. Funke, U. Grabowski, N. Glatthor, M. Kiefer, T. Schieferdecker, G. P. Stiller, and S. Versick (2009), Retrieval of temperature, H2O, O3, HNO3, CH4, N2O, ClONO2 and ClO from MIPAS reduced resolution nominal mode limb emission measurementsAtmos. Meas. Tech., 2, 159–175, doi:10.5194/amt-2-159-2009.
  21. Clough, S. A., M. W. Shephard, J. Worden, P. D. Brown, H. M. Worden, M. Luo, C. D. Rodgers, C. P. Rinsland, A. Goldman, L. Brown, S. S. Kulawik, A. Eldering, M. Lampel, G. Osterman, R. Beer, K. Bowman, K. E. Cady-Pereira, and E. J. Mlawer (2006), Forward Model and Jacobians for Tropospheric Emission Spectrometer RetrievalsIEEE T. Geosci. Remote, 44(5), 1308–1323, doi:10.1109/TGRS.2005.860986.
  22. Comstock, J. M., R. F. Lin, D. O. Starr, and P. Yang (2008), Understanding ice supersaturation, particle growth, and number concentration in cirrus cloudsJ. Geophys. Res., 113, D23211, doi:10.1029/2008JD010332.
  23. Crone, L. J. and D. S. Crosby (1995), Statistical Applications of a Metric on Subspaces to Satellite MeteorologyTechnometrics, 37(3), 324–328.
  24. Cuccoli, F., L. Facheris, S. Tanelli, and D. Giuli (2001), Microwave Attenuation Measurement in Satellite-Ground Links: The Potential of Spectral Analysis for Water Vapor Profiles RetrievalIEEE Geosci. Remote Sens., 39(3), 645–654.
  25. Deeter, M. N. and K. F. Evans (2000), A Novel Ice-Cloud Retrieval Algorithm Based on the Millimeter-Wave Imaging Radiometer (MIR) 150- and 220-GHz ChannelsJ. Appl. Meteorol., 39, 623–633.
  26. Dinelli, B. M., D. Alpaslan, M. Carlotti, L. Magnani, and M. Ridolfi (2004), Multi-target retrieval (MTR): the simultaneous retrieval of pressure, temperature and volume mixing ratio profiles from limb-scanning atmospheric measurementsJ. Quant. Spectrosc. Radiat. Transfer, 84, 141–157.
  27. Duda, D. P., J. D. Spinhirne, and W. D. Hart (1998), Retrieval of contrail microphysical properties during SUCCESS by the split-window methodGeophys. Res. Lett., 25(8), 1149–1152.
  28. Eberhard, W. L., S. Y. Matrosov, A. S. Frisch, and J. M. Intrieri (1997), Microphysical Retrievals from Simultaneous Radar and Optical of Microwave Measurements, Environmental Technology Laboratory.
  29. Ekström, M., P. Eriksson, B. Rydberg, and D. P. Murtagh (2007), First Odin sub-mm retrievals in the tropical upper troposphere: humidity and cloud ice signalsAtmos. Chem. Phys., 7, 459–469, doi:10.5194/acp-7-459-2007.
  30. Engelen, R. J. and G. L. Stephens (1999), Characterization of water-vapour retrievals from TOVS/HIRS and SSM/T-2 measurementsQ. J. R. Meteorol. Soc., 125, 331–351.
  31. English, S. J., J. R. Eyre, and J. A. Smith (1999), A cloud-detection scheme for use with satellite sounding radiances in the context of data assimilation for numerical weather predictionQ. J. R. Meteorol. Soc., 125(559), 2359–2378.
  32. English, S. J. (1999), Estimation of temperature and humidity profile information from microwave radiances over different surface typesJ. Appl. Meteorol., 38, 1526–1541.
  33. Eriksson, P., M. Ekström, B. Rydberg, and D. Murtagh (2007), First Odin sub-mm retrievals in the tropical upper troposphere: ice cloud propertiesAtmos. Chem. Phys., 7, 471–483, doi:10.5194/acp-7-471-2007.
  34. Erukhimova, T. L. and E. V. Suvorov (2001), Retrieval of Ozone-Denisty and Atmospheric-Temperature Profiles using the Spectra of Microwave Absorption in two Rotational Ozone LinesRadiophys. Quant. Elec., 44(1–2), 129–136.
  35. Escoffier, C., J. J. Bates, A. Chedin ans W. B. Rossow, and J. Schmetz (2001), Comparison of upper tropospheric humidity retrievals from TOVS and MeteosatJ. Geophys. Res., 106(D6), 5227–5238.
  36. Evans, K. F., S. J. Walter, A. J. Heymsfield, and G. M. McFarquhar (2002), Submillimeter-Wave Cloud Ice Radiometer: Simulations of retrieval algorithm performanceJ. Geophys. Res., 107(D3), doi:10.1029/2001JD000709.
  37. Evans, K. F., J. R. Wang, D. O'C Starr, G. Heymsfield, L. Li, L. Tian, R. P. Lawson, A. J. Heymsfield, and A. Bansemer (2012), Ice hydrometeor profile retrieval algorithm for high-frequency microwave radiometers: application to the CoSSIR instrument during TC4Atmos. Meas. Tech., 5(9), 2277–2306, doi:10.5194/amt-5-2277-2012.
  38. Ferraro, R. R., F. Weng, N. C. Grody, L. Zhao, H. Meng, C. Kongoli, P. Pellegrino, S. Qiu, and C. Dean (2005), NOAA operational hydrological products derived from the advanced microwave sounding unitIEEE T. Geosci. Remote, 43(5), 1036–1049.
  39. Fily, M., A. Royer, K. Goita, and C. Pringent (2003), A simple retrieval method for land surface temperature and fraction of water surface determination from satellite microwave brightness temperature in sub-arctic areasRem. Sen. Env., 5832, 1–11.
  40. Fishbein, E. F., R. E. Cofield, L. Froidevaux, R. F. Jarnot, T. Lungu, W. G. Read, Z. Shippony, J. W. Waters, I. S. McDermid, T. J. McGee, U. Singh, M. Gross, A. Hauchecorne, P. Keckhut, M. E. Gelman, and R. M. Nagatani (1996), Validation of UARS Microwave Limb Sounder temperature and pressure measurementsJ. Geophys. Res., 101(D6), 9983–10,016.
  41. Franquet, S., N. Scott, A. Chedin, R. Armante, and L. Eymard (1111), Simulations of radiative transfer in the SAPHIR and AMSU channels in the perspective of water vapor profiles retrievals, ARA/LMD Ecole Polytechnique, CETP.
  42. Froidevaux, L., W. G. Read, T. A. Lungu, R. E. Cofield, E. F. Fishbein, D. A. Flower, R. F. Jarnot, B. P. Ridenoure, Z. Shippony, J. W. Waters, J. J. Margitan, I. S. McDermid, R. A. Stachnik, G. E. Peckham, G. Braathen, T. Deshler, J. Fishman, D. J. Hofmann, and S. J. Oltmans (1996), Validation of UARS Microwave Limb Sounder ozone measurementsJ. Geophys. Res., 101(D6), 10,017–10,060.
  43. Fu, Q., C. M. Johanson, S. G. Warren, and D. J. Seidel (2004), Contribution of stratospheric cooling to satellite-inferred tropospheric temperature trendsNature, 429, 55–58, doi:10.1038/nature02524.
  44. Funke, B., G. P. Stiller, T. von Clarmann, G. Echle, and H. Fischer (1998), CO2 Line Mixing in MIPAS Limb Emission Spectra and its Influence on Retrieval of Atmospheric ParametersJ. Quant. Spectrosc. Radiat. Transfer, 59(3–5), 215–230.
  45. Goss-Custrad, M., J. J. Remedios, A. Lambert, F. W. Taylor, C. D. Rodgers, M. Lopez-Puertas, G. Zaragoza, M. R. Gunson, M. R. Suttie, J. E. Harries, and J. M. Russel III (1996), Measurements of water vapor distributions by the improved stratospheric and mesospheric sounder: Retrieval and validationJ. Geophys. Res., 101(D6), 9907–9928.
  46. Guo, G., Q. Ji, P. Yang, and S.-C. Tsay (2005), Remote Sensing of Cirrus Optical and Microphysical Properties From Ground-Based Infrared Radiometric Measurements- Part II: Retrievals From CRYSTAL-FACE MeasurementsIEEE Geosci. Remote Sens. Let., 2(2), 132–135.
  47. Han, Q.-Y., W. B. Rossow, J. Chou, K.-S. Kuo, and R. M. Welch (1999), The effects of aspect ratio and surface roughness on satellite retrievals of ice-cloud propertiesJ. Quant. Spectrosc. Radiat. Transfer, 63, 559–583.
  48. 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.
  49. Heymsfield, A. J., A. Protat, R. Austin, D. Bouniol, R. Hogan, J. Delanoë, H. Okamoto, K. Sato, G.-J. van Zadelhoff, D. Donovan, and Z. Wang (2008), Testing IWC Retrieval Methods Using Radar and Ancillary Measurements with In Situ DataJ. Appl. Meteorol. Clim., 47(1), 135–163, doi:10.1175/2007JAMC1606.1.
  50. Hobbs, P. V., A. L. Rangno, T. Uttal, and M. Shupe (2001), Airborne studies of cloud structures over the Artic Ocean and comparisons with retrievals from ship-based remote sensing measurementsJ. Geophys. Res., 106(D14), 15029–15044.
  51. Hoffmann, L. and M. J. Alexander (2009), Retrieval of stratospheric temperatures from Atmospheric Infrared Sounder radiance measurements for gravity wave studiesJ. Geophys. Res., 114, D07105, doi:10.1029/2008JD011241.
  52. Jaynes, E. T. and G. L. Bretthorst (2003), Probability Theory: The Logic of Science, Cambridge University Press.
  53. Jethva, H. (2003), Comparison of Microwave Radiative Transfer Models and Retrieval of Humidity using Satellite Microwave Data, Indian Institute of Science.
  54. Jethva, H. and J. Srinivasan (2004), Role of variation in vertical profiles of relative humidity on retrieval of humidity from AMSU-B dataGeophys. Res. Lett., 31, doi:10.1029/2004GL021098.
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  56. Kidd, C., D. R. Kniveton, M. C. Todd, and T. J. Bellerby (2003), Satellite Rainfall Estimation Using Combined Passive Microwave and Infrared AlgorithmsJ. Hydrometeorol., 4, 1088–1104.
  57. Kidd, C. and V. Levizzani (2011), Status of satellite precipitation retrievalsHydrol. Earth Syst. Sci., 15(4), 1109–1116, doi:10.5194/hess-15-1109-2011.
  58. Kidder, S. Q., M. D. Goldberg, R. M. Zehr, M. DeMaria, J. F. W. Purdom, C. S. Velden, N. C. Grody, and S. J. Kusselson (2000), Satellite Analysis of Tropical Cyclones Using the Advanced Microwave Sounding Unit (AMSU)Bull. Amer. Met. Soc., 81(6), 1241–1259.
  59. Kiedron, P., J. Michalsky, B. Schmid, D. Slater, J. Berndt, L. Harrison, P. Racette, E. Westwater, and Y. Han (2001), A Robust Retrieval of Water Vapor Column in Dry Arctic Conditions Using the Rotating Shadowband SpectroratiometerJ. Geophys. Res.
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  63. Koner, P. K., A. R. Harris, and P. Dash (2016), A Deterministic Method for Profile Retrievals From Hyperspectral Satellite MeasurementsIEEE T. Geosci. Remote, 54(10), 5657–5670, doi:10.1109/TGRS.2016.2565722.
  64. Krasnopolsky, V. M. (2007), Neural Network Emulations for Complex Multidimensional Geophysical Mappings: Applications of Neural Network Techniques to Atmospheric and Oceanic Satellite Retrievals and Numerical ModelingRev. Geophys., 45, RG3009, doi:10.1029/2006RG000200.
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  69. L'Ecuyer, T. S., P. Gabriel, K. Leesman, S. J. Cooper, and G. L. Stephens (2006), Objective Assessment of the Information Content of Visible and Infrared Radiance Measurements for Cloud Microphysical Property Retrievals over the Global Oceans. Part I: Liquid CloudsJ. Appl. Meteorol. Clim., 45, 20–41.
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