Qing Song, Zhang Jie, Bao Yu-Hai
College of Geographical Science, Inner Mongolia Normal University, Huhhot 010022, China.
Guang Pu Xue Yu Guang Pu Fen Xi. 2013 Feb;33(2):498-501.
Inherent optical properties are important marine optical parameters which are the basic input parameters of the radiative transfer model. Based on hyperspectral remote sensing reflectance and total absorption coefficient data measured in 2005 in the Bohai Sea, the nonlinear minimization model was firstly used to retrieve the inherent optical properties. The model was validated by in situ data. The averaged percent errors were 33.8%, 20.4%, 27.7%, 37.5%, 9.5% and 10.8% for the total absorption coefficients at 412, 440, 510, 555, 650 and 676 nm bands respectively. The main error sources of model were the uncertainty of the model parameters and measurement errors. According to the discussion, the spectral slope S has a slight influence on the retrieval of total absorption coefficients. However, the impact of the spectral power Y on the retrieval cannot be negligible. The model is suitable for hyperspectral data and can fulfill the gaps of inherent optical properties retrieval research in the Bohai Sea, so it can be used for hyperspectral remote sensing data to retrieve inherent optical properties.
固有光学特性是重要的海洋光学参数,是辐射传输模型的基本输入参数。基于2005年在渤海测量的高光谱遥感反射率和总吸收系数数据,首次使用非线性最小化模型反演固有光学特性。该模型通过现场数据进行了验证。412、440、510、555、650和676nm波段总吸收系数的平均百分比误差分别为33.8%、20.4%、27.7%、37.5%、9.5%和10.8%。模型的主要误差来源为模型参数的不确定性和测量误差。根据讨论,光谱斜率S对总吸收系数的反演影响较小。然而,光谱功率Y对反演的影响不可忽略。该模型适用于高光谱数据,能够填补渤海固有光学特性反演研究的空白,可用于高光谱遥感数据反演固有光学特性。