Title of article :
Retrieving visibility values using satellite remote sensing data
Author/Authors :
Hadjimitsis، نويسنده , , Diofantos G. and Clayton، نويسنده , , Chris and Toulios، نويسنده , , Leonidas، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2010
Pages :
4
From page :
121
To page :
124
Abstract :
The recent development of satellite meteorology has allowed us to estimate spatially and frequently number of basic meteorological parameters. This paper presents the proposed methodology for retrieving visibility values based on the application of the darkest pixel atmospheric correction algorithm on satellite image data. The method is based on the use of the radiative transfer calculations followed by some key assumptions. Landsat-5 TM band 1 images (0.45–0.52 μm) have been used to determine the visibility value for each image date. A direct comparison between the measured visibility data from the airport meteorological stations with the determined visibility data was performed showing high correlation values. Indeed, by relating the determined visibility data with those measured on the Heathrow Airport station in the West London (UK), a correlation coefficient of r2 = 0.97 has been found with the observed significance for the regression model to be less than 0.05, for four multi-temporal images acquired on 1985 and 1986. The algorithm has been tested also to Landsat TM images of the Paphos Airport area in Cyprus with satisfactory agreement between the visibilities measured at the meteorological station and those found from the images. The algorithm presented may be useful for assessing the atmospheric conditions of satellite images and also can assist the improvement and effectiveness of the available atmospheric correction algorithms.
Keywords :
Aerosol optical thickness , Atmospheric correction , Satellite remote sensing , Darkest pixel , Visibility
Journal title :
Physics and Chemistry of the Earth
Serial Year :
2010
Journal title :
Physics and Chemistry of the Earth
Record number :
2301791
Link To Document :
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