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Ocean optical source estimation with widely spaced irradiance measurements

机译:海洋光源的估计与宽间隔的辐照度测量

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摘要

A method was developed for determining the spatial distribution of a source from downward and upward irradiance measurements at a single wavelength in seawater of known optical properties. The algorithm uses measurements at two depths located an arbitrary distance apart and solves two nonlinear equations for two parameters that fit a globally exponential or linear source shape. Complex spatially dependent source shapes can be estimated from an irradiance profile by piecing together estimates from neighboring measurement pairs. Numerical tests illustrate the sensitivity of the algorithm to depth, measurement spacing, chlorophyll concentration, sensor noise, and uncertainty in the a priori assumed inherent optical properties. The algorithm works well with widely spaced measurements, moderate sensor noise, and uncertainties in the optical properties regardless of whether the assumed and true profiles are the same shape. (C) 1998 Optical Society of America. [References: 20]
机译:开发了一种用于从具有已知光学特性的海水中的单个波长下的向下和向上辐照度测量确定光源的空间分布的方法。该算法使用位于任意距离的两个深度处的测量值,并针对适合全局指数或线性源形状的两个参数求解两个非线性方程。通过将来自相邻测量对的估计值拼凑在一起,可以从辐照轮廓估计复杂的空间相关源形状。数值测试说明了该算法对深度,测量间距,叶绿素浓度,传感器噪声和先验假定固有光学特性的不确定性的敏感性。该算法适用于宽间隔的测量,适度的传感器噪声以及光学特性的不确定性,无论假定轮廓和真实轮廓是否相同。 (C)1998年美国眼镜学会。 [参考:20]

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