DocumentCode
2083733
Title
Atmospheric Correction of SPOT5 Land Surface Imagery
Author
Chen, Wei-Tao ; Zhang, Zhi ; Wang, Yan-Xin ; Wen, Xing-Ping
Author_Institution
Dept. for Crust Dynamics & Deep Space Exploitation of NRSCC, China Univ. of Geosci., Wuhan, China
fYear
2009
fDate
17-19 Oct. 2009
Firstpage
1
Lastpage
5
Abstract
High spatial resolution satellite images are playing the more and more important role in real-time monitoring on earth surface conditions. But haze and cloud reduce those application capabilities, especially in south of China. Thus, atmospheric correction is necessary for extracting quantitatively information from high spatial resolution satellite images. SPOT5 imagery is selected as the data source. In terms of multi-spectral imagery, in order to remove hazy regions and get the surface reflectance imagery, an improved homomorphic filter is combined into the matching mean reflectance in both hazy/clear regions method. Based on band characteristic of SPOT5, visible bands take part in classifying after haze removal using the improved homomorphic filter in process. Both aerosol optical depth and surface reflectance images are retrieved using MOTRAN 4.0. What´ more, in terms of panchromatic imagery, authors use MOTRAN 4.0 remove atmospheric effect by means of the retrieved aerosol optical depth. The two retrieved surface reflectance images are both obviously better than original images. When more bands of SPOT5 take part in classifying, it can improve the accuracy of clusters in both hazy & clear regions, so it is helpful to make up the disadvantages of mean reflectance matching method in both hazy/clear regions. Meanwhile, the method in paper can be used other high spatial resolution satellite images.
Keywords
aerosols; atmospheric optics; geophysics computing; image resolution; image retrieval; remote sensing; MOTRAN 4.0; SPOT5 land surface imagery; atmospheric correction; atmospheric effect; band characteristic; earth surface condition; haze removal; high spatial resolution satellite image; homomorphic filter; multispectral imagery; panchromatic imagery; retrieved aerosol optical depth; Aerosols; Clouds; Condition monitoring; Earth; Image retrieval; Land surface; Optical filters; Reflectivity; Satellites; Spatial resolution;
fLanguage
English
Publisher
ieee
Conference_Titel
Image and Signal Processing, 2009. CISP '09. 2nd International Congress on
Conference_Location
Tianjin
Print_ISBN
978-1-4244-4129-7
Electronic_ISBN
978-1-4244-4131-0
Type
conf
DOI
10.1109/CISP.2009.5301432
Filename
5301432
Link To Document