Author:
Han Zeying,Gu Xingfa,Zuo Xin,Bi Kaiyi,Shi Shuaiyi
Abstract
When a precise quantitative analysis of satellite measurements over bodies of water is required, the bidirectional effects of water-leaving radiance must be considered. The bidirectional reflectance distribution function (BRDF) is used to estimate the directional dependency of the radiance. Previous research on BRDF has focused on oceanic waters; few studies on turbid inland waters have been conducted. In this article, using multi-angle MISR measurements, five semi-empirical BRDF models (MAG2002, Lee2004, Park-Ruddick 2005, Woerd-Pasterkamp2008, and Lee2011) were quantitatively compared, and an adaptive algorithm was proposed over a typical turbid inland lake, Taihu Lake, China. Our results reveal the following: 1) the Woerd-Pasterkamp2008 and Lee2011 models provide the best fits with correlation coefficients greater than 0.8; 2) when prior modeling parameters were used, the Lee2011 model was still the most accurate with RMSEs less than 1.1%, while the accuracy of the Woerd-Pasterkamp2008 model varied; and 3) the use of an adaptive algorithm including an empirical rule based on the ratio ofbb/aimproved the accuracy. The results provide a theoretical basis for BRDF models and BRDF effects over inland Case II waters. They also providea prioriknowledge for future studies on water constituents and the quantitative inversion of atmospheric parameters.
Funder
National Key Research and Development Program of China
National Natural Science Foundation of China
Subject
General Environmental Science
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