Park Young-Je, Ruddick Kevin
Management Unit of the North Sea Mathematical Models, Royal Belgian Institute of Natural Sciences, Gulledelle 100, Brussels 1200, Belgium.
Appl Opt. 2005 Mar 1;44(7):1236-49. doi: 10.1364/ao.44.001236.
A remote-sensing reflectance model based on a lookup table is proposed for use in analyzing satellite ocean color data in both case 1 and case 2 waters. The model coefficients are tabulated for grid values of three angles--solar zenith, sensor zenith, and relative azimuth--to take account of directional variation. This model also requires, as input, a phase function parameter defined by the contribution of suspended particles to the backscattering coefficient. The model is generated from radiative transfer simulations for a wide range of inherent optical properties that cover both case 1 and 2 waters. The model uncertainty that is due to phase function variability is significantly reduced from that in conventional models. Bidirectional variation of reflectance is described and explained for a variety of cases. The effects of wind speed and cloud cover on bidirectional variation are also considered, including those for the fully overcast case in which angular variation can still be considerable (approximately 10%). The implications for seaborne validation of satellite-derived water-leaving reflectance are discussed.
提出了一种基于查找表的遥感反射率模型,用于分析1类和2类水体中的卫星海洋颜色数据。针对太阳天顶角、传感器天顶角和相对方位角这三个角度的网格值,将模型系数制成表格,以考虑方向变化。该模型还需要一个由悬浮颗粒对后向散射系数的贡献定义的相位函数参数作为输入。该模型是通过对涵盖1类和2类水体的广泛固有光学特性进行辐射传输模拟生成的。与传统模型相比,由于相位函数变异性导致的模型不确定性显著降低。描述并解释了各种情况下反射率的双向变化。还考虑了风速和云量对双向变化的影响,包括全阴天情况下的影响,在这种情况下角度变化仍然相当可观(约10%)。讨论了对卫星衍生的离水反射率进行海上验证的意义。