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Earth-Viewing L-Band Radiometer Sensing of Sea Surface Scattered Celestial Sky Radiation—Part I: General Characteristics

机译:观察地球的L波段辐射计对海面散射的天体天空辐射的感知-第一部分:一般特性

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The “galactic glitter” phenomenon at L-band, i.e., the scattering of celestial sky radiation by the rough ocean surface, is examined here as a potential source of error for sea surface salinity (SSS) remote sensing. We begin by considering the transformations that must be applied to downwelling celestial noise in order to compute the eventual impact on the antenna temperature. Then, outside the context of any particular measurement system, we use approximate scattering models along with a model for the equilibrium wind wave spectrum to examine how the scattered signal at the surface might depend on the geophysical conditions and scattering geometry. It is found that, when the specular point lies far away from the galactic plane, where the incident celestial brightness is uniform, sea surface roughness has a negligible impact on the glitter. At such a point, variations in both the orientation of the incidence plane and the wind direction relative to the scattering azimuth have negligible impact. By contrast, when the specular point lies in the vicinity of a localized maximum of brightness, scattering by the roughened ocean surface may reduce the glitter by more than 30%, as compared to a perfectly flat surface, and the glitter amplitude may vary by up to 0.7 K with variations in wind direction and by up to 0.5 K with variations in incidence plane orientation. It is shown that accounting for the roughness impact on celestial noise contamination is of particular concern for the remote sensing of SSS.
机译:L波段的“银河闪光”现象,即粗糙的海洋表面散射的天空辐射,在这里作为海面盐度(SSS)遥感的潜在误差源进行了研究。我们首先考虑必须应用于下降天体噪声的转换,以便计算最终对天线温度的影响。然后,在任何特定测量系统的上下文之外,我们使用近似散射模型以及平衡风波谱模型来检查地表散射信号如何取决于地球物理条件和散射几何形状。发现当镜面点远离银河平面时,入射天体亮度是均匀的,海面粗糙度对闪光的影响可以忽略不计。在这一点上,入射平面的取向和相对于散射方位角的风向的变化都可以忽略不计。相反,当镜面点位于局部最大亮度附近时,与完全平坦的表面相比,粗糙的海洋表面的散射可能会使闪光减少30%以上,并且闪光幅度可能会变化最多在风向变化的情况下最大为0.7 K,在入射面方向变化的情况下最大为0.5K。结果表明,考虑到粗糙度对天体噪声污染的影响,对于SSS的遥感尤为重要。

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