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  • Other Sources  (3)
  • METEOROLOGY AND CLIMATOLOGY  (2)
  • ASTRONAUTICS (GENERAL)  (1)
  • 1
    Publication Date: 2019-06-28
    Description: An improved automatic processing method for the tracking of cloud motions as revealed by satellite imagery is presented and applications of the method to GOES observations of Hurricane Eloise and Meteosat water vapor and infrared data are presented. The method is shown to involve steps of picture smoothing, target selection and the calculation of cloud motion vectors by the matching of a group at a given time with its best likeness at a later time, or by a cross-correlation computation. Cloud motion computations can be made in as many as four separate layers simultaneously. For data of 4 and 8 km resolution in the eye of Hurricane Eloise, the automatic system is found to provide results comparable in accuracy and coverage to those obtained by NASA analysts using the Atmospheric and Oceanographic Information Processing System, with results obtained by the pattern recognition and cross correlation computations differing by only fractions of a pixel. For Meteosat water vapor data from the tropics and midlatitudes, the automatic motion computations are found to be reliable only in areas where the water vapor fields contained small-scale structure, although excellent results are obtained using Meteosat IR data in the same regions. The automatic method thus appears to be competitive in accuracy and coverage with motion determination by human analysts.
    Keywords: METEOROLOGY AND CLIMATOLOGY
    Type: Journal of Applied Meteorology; 20; Mar. 198
    Format: text
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  • 2
    Publication Date: 2019-06-28
    Description: The development of a Monte Carlo simulation of numerous aspects of the IRAS mission is described. The formulations used in modelling the infrared sky, the radiation environment, and the telescope are discussed. The results of running the simulation with varying mission parameters are presented.
    Keywords: ASTRONAUTICS (GENERAL)
    Type: AAS PAPER 83-383
    Format: text
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  • 3
    Publication Date: 2019-07-13
    Description: The automatic cloud tracking system was applied to METEOSAT 6.7 micrometers water vapor measurements to learn whether the system can track the motions of water vapor patterns. Data for the midlatitudes, subtropics, and tropics were selected from a sequence of METEOSAT pictures for 25 April 1978. Trackable features in the water vapor patterns were identified using a clustering technique and the features were tracked by two different methods. In flat (low contrast) water vapor fields, the automatic motion computations were not reliable, but in areas where the water vapor fields contained small scale structure (such as in the vicinity of active weather phenomena) the computations were successful. Cloud motions were computed using METEOSAT infrared observations (including tropical convective systems and midlatitude jet stream cirrus).
    Keywords: METEOROLOGY AND CLIMATOLOGY
    Type: NASA-CR-159995
    Format: application/pdf
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