DocumentCode
2444560
Title
Remote sensing retrieval of chlorophyll-a concentration based on normalized peak area in red band region
Author
Ma, Wandong ; Wang, Qiao ; Wu, Chuanqing ; Qianguo Xing ; Shi, Ping
Author_Institution
Satellite Environ. Center, Minist. of Environ. Protection, Beijing, China
fYear
2011
fDate
24-26 June 2011
Firstpage
1455
Lastpage
1459
Abstract
Due to the overlap of absorption and scattering of water constituents of case 2 waters, the retrieval precision of chlorophyll-a concentration is challenging. In this article, the absorption coefficient and backscattering coefficient of waters with different chlorophyll-a concentration were calculated after the absorption and back-scattering coefficients of special water constituents were measured. Afterwards, the above-water reflectance of remote sensing was achieved according to the radiation transfer model and the light-field distribution function of interface between the water and atmosphere. Based on the spectral characteristics of chlorophyll-a in red band region, two absorption boughs (Rrs674 and Rrs740) adjacent to reflectance peak were used to calculate the normalized peak area (NPA). After the relationship between the NPA and the chlorophyll-a concentration was studied, we concluded that there was a better relationship (R2=0.99) and lower RMS error (RMSE=5.09μg·L-1) than other retrieval models of chlorophyll-a. The retrieval model of NPA (C = a × NPAb + c, where C is the concentration of water constituents; a, b and c are the empirical parameters) has a promising prospect and could be used to retrieve the concentrations of water constituents with higher precision in accordance with the characteristics of various water constituents at different bands.
Keywords
absorption coefficients; backscatter; organic compounds; remote sensing; water; above-water reflectance; absorption coefficient; backscattering coefficient; chlorophyll-a concentration; light-field distribution function; normalized peak area; red band region; remote sensing retrieval; Estimation; Fluorescence; Oceans; Optical sensors; Reflectivity; Remote sensing; Water; chlorophyll-a; normalized peak area; retrieval precision; water color remote sensing;
fLanguage
English
Publisher
ieee
Conference_Titel
Remote Sensing, Environment and Transportation Engineering (RSETE), 2011 International Conference on
Conference_Location
Nanjing
Print_ISBN
978-1-4244-9172-8
Type
conf
DOI
10.1109/RSETE.2011.5964558
Filename
5964558
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