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Enhancing SMOS brightness temperatures over the ocean using the nodal sampling image reconstruction technique

机译:使用节点采样图像重建技术提高海洋上的SMOS亮度温度

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Abrupt changes in the Soil Moisture and Ocean Salinity (SMOS) brightness temperatures, such as those produced by land/sea/ice transitions and Radio -Frequency Interference (RFI) sources, produce artificial rippling patterns (i.e. the so-called Gibbs-like contamination) that propagate through the SMOS-reconstructed image. A nodal sampling technique, focused on the reduction of this kind of contamination by sampling at the points where the perturbation cancels, was introduced by Gonzalez-Gambau et al. (2015). In this work we show that the quality of nodal sampling can be largely improved by refining the determination of the nodal grid. In addition, we have carried out an extensive validation of the resulting data over the ocean. Nodal sampling reduces sidelobe levels and ripples in the reconstructed images leading to brightness temperatures in better agreement with the theoretically modeled ones. Validation of the salinity retrievals against close-to-surface Argo salinity observations shows that nodal sampling leads to improved salinity retrievals in open ocean, while close to the coast land sea contamination seems to deteriorate the quality. Besides, spectral analysis shows that nodal sampled salinities become closer to what is geophysically expected without loss of effective spatial resolution. (C) 2016 Elsevier Inc. All rights reserved.
机译:土壤水分和海洋盐度(SMOS)亮度温度的突然变化,例如陆/海/冰转换和无线电频率干扰(RFI)源所产生的温度,会产生人为的波动模式(即所谓的吉布斯样污染)通过SMOS重建的图像传播。 Gonzalez-Gambau等人介绍了一种节点采样技术,其重点是通过在干扰消除的点进行采样来减少这种污染。 (2015)。在这项工作中,我们表明,通过改进节点网格的确定,可以大大提高节点采样的质量。此外,我们对海洋上的结果数据进行了广泛的验证。节点采样减少了旁瓣电平和重构图像中的纹波,从而导致了亮度温度与理论建模的图像更好地吻合。针对近地Argo盐度观测值进行的盐度反演验证表明,节点取样可改善公海中的盐度反演,而靠近沿海陆地的海域污染似乎使质量下降。此外,光谱分析表明,节点取样的盐度变得更接近地球物理预期的范围,而不会损失有效的空间分辨率。 (C)2016 Elsevier Inc.保留所有权利。

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