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Filtered by keyword:neural network

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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. Hsu, K.-L., X. Gao, S. Sorooshian, and H. V. Gupta (1997), Precipitation Estimation from Remotely Sensed Information Using Artificial Neural NetworksJ. Appl. Meteorol., 36, 1176–1190.
  3. Jiménez, C., P. Eriksson, and J. Askne (2000), Non-linear inversion of Odin sub-mm observations in the lower stratosphere by neutral networksMicrow. Radiomet. Remote Sens. Earth's Surf. Atmosphere, 503–511.
  4. Jiménez, C., P. Eriksson, and D. Murtagh (2003), Inversion of Odin limb sounding submillimeter observations by a neural network techniqueRadio Sci., 38(4), 8062, doi:10.1029/2002RS002644.
  5. 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.
  6. Sorooshian, S., K.-L. Hsu, X. Gao, H. V. Gupta, B. Imam, and D. Braithwaite (2000), Evaluation of PERSIANN System Satellite-Based Estimates of Tropical RainfallBull. Amer. Met. Soc., 81(9), 2035–2046.
  7. Surussavadee, C. and D. H. Staelin (2008), Global Millimeter-Wave Precipitation Retrievals Trained With a Cloud-Resolving Numerical Weather Prediction Model, Part I: Retrieval DesignIEEE T. Geosci. Remote, 46, 99–108, doi:10.1109/TGRS.2007.908302.
  8. Surussavadee, C. and D. H. Staelin (2008), Global Millimeter-Wave Precipitation Retrievals Trained With a Cloud-Resolving Numerical Weather-Prediction Model, Part II: Performance EvaluationIEEE T. Geosci. Remote, 46, 109–118, doi:10.1109/TGRS.2007.908299.