Atmospheric Correction Over Coastal Turbid Waters of Bay of Bengal Using OCEANSAT-I Ocean Colour Monitor (OCM) Data

被引:0
作者
Nivedita Sanwlani
Prakash Chauhan
Ranganath R. Navalgund
机构
[1] Space Applications Centre,
[2] (ISRO),undefined
来源
Journal of the Indian Society of Remote Sensing | 2010年 / 38卷
关键词
Ocean colour; OCEANSAT-1; Ocean colour monitor (OCM); Turbid waters and atmospheric correction;
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中图分类号
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摘要
Space-borne ocean-colour remote sensor-detected radiance is heavily contaminated by solar radiation backscattered by the atmospheric air molecules and aerosols. Hence, the first step in ocean-colour data processing is the removal of this atmospheric contribution from the sensor-detected radiance to enable detection of optically active oceanic constituents e.g. chlorophyll-a, suspended sediment etc. In standard atmospheric correction procedure for OCEANSAT-1 Ocean Colour Monitor (OCM) data, NIR bands centered at 765 and 865 nm wavelengths were used for aerosol characterization. Due to high absorption by water molecules, ocean surface in these two wavelengths acts as dark background, therefore, sensor detected radiance can be assumed to have major contribution from atmospheric scattering. For coastal turbid waters this assumption of dark surface fails due to the presence of highly scattering sediments which causes sufficient water-leaving radiance in NIR bands and lead to over-estimation of aerosol radiance resulting in negative water leaving radiance for λ < 700 nm. In the present study, for the turbid coastal waters in the northern Bay of Bengal, the concept of spatial homogeneity of aerosol and water leaving reflectance has been applied to perform atmospheric correction of OCAEANSAT-1 OCM data. The results of the turbid water atmospheric correction have also been validated using in-situ measured water-leaving radiance. Comparison of satellite derived water-leaving radiance for five coastal stations with in-situ measured radiance spectra, indicates an improvement over the standard atmospheric correction algorithm giving physically realistic and positive values. Root Mean Square Error (RMSE) between the in-situ measured and satellite derived water leaving radiance for wavelengths 412 nm, 443 nm, 490 nm, 512 nm and 555 nm was found to be 1.11, 0.718, 0.575, 0.611 and 0.651%, respectively, using standard atmospheric correction procedure. By the use of spatial homogeneity concept, this error was reduced to 0.125, 0.173, 0.176, 0.225, and 0.290 and the correlation coefficient arrived at 0.945, which is an improvement over the standard atmospheric correction procedure.
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页码:617 / 626
页数:9
相关论文
共 38 条
[1]  
Chauhan P(2002)Surface chlorophyll estimation in the Arabian Sea using IRS-P4 OCM Ocean Color Monitor (OCM) satellite data International Journal of Remote Sensing 23 1663-1676
[2]  
Mohan M(1978)Removal of atmospheric effects from satellite imagery of the oceans Applied Optics 17 1631-1636
[3]  
Sarangi RK(1987)Coastal Zone Colour Scanner atmospheric correction algorithm: multiple scattering effects Applied Optics 26 2111-2122
[4]  
Kumari B(1997)Atmospheric correction of ocean colour imagery in the Earth Observing System era Journal of Geophysical Research 102 17081-17106
[5]  
Nayak S(1994)Retrieval of water-leaving radiance and aerosol optical thickness over the oceans with SeaWiFS: a preliminary algorithm Applied Optics 33 443-452
[6]  
Matondkar SGP(2004)Monitoring aerosol optical properties over the Mediterranean from SeaWiFS images using a neural network inversion Geophysical Research Letters 31 L13107-5451
[7]  
Gordan HR(1996)Atmospheric correction over case2 waters with an iterative algorithm Applied Optics 35 5443-555
[8]  
Gordan HR(2005)Modifications to the atmospheric correction of SeaWiFS ocean colour images over turbid waters’ Continental Shelf Research 25 539-912
[9]  
Castano DJ(1977)Analysis of variations in Ocean Colour Limnology and Oceanography 22 709-1179
[10]  
Gordon H. R.(2000)Atmospheric correction of SeaWiFS imagery for turbid coastal and inland waters Applied Optics 39 897-3591