Deriving inherent optical properties from water color: a multiband quasi-analytical algorithm for optically deep waters

海洋色 辐射传输 高光谱成像 吸收(声学) 衰减系数 遥感 算法 领域(数学) 计算机科学 卫星 大气辐射传输码 环境科学 光学 物理 数学 地质学 天文 纯数学
作者
Zhongping Lee,Kendall L. Carder,Robert Arnone
出处
期刊:Applied optics [The Optical Society]
卷期号:41 (27): 5755-5755 被引量:1537
标识
DOI:10.1364/ao.41.005755
摘要

For open ocean and coastal waters, a multiband quasi-analytical algorithm is developed to retrieve absorption and backscattering coefficients, as well as absorption coefficients of phytoplankton pigments and gelbstoff. This algorithm is based on remote-sensing reflectance models derived from the radiative transfer equation, and values of total absorption and backscattering coefficients are analytically calculated from values of remote-sensing reflectance. In the calculation of total absorption coefficient, no spectral models for pigment and gelbstoff absorption coefficients are used. Actually those absorption coefficients are spectrally decomposed from the derived total absorption coefficient in a separate calculation. The algorithm is easy to understand and simple to implement. It can be applied to data from past and current satellite sensors, as well as to data from hyperspectral sensors. There are only limited empirical relationships involved in the algorithm, and they are for less important properties, which implies that the concept and details of the algorithm could be applied to many data for oceanic observations. The algorithm is applied to simulated data and field data, both non-case1, to test its performance, and the results are quite promising. More independent tests with field-measured data are desired to validate and improve this algorithm.
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