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首页> 外文期刊>Geoscience and Remote Sensing Letters, IEEE >About the Optimal Grid for SMOS Level 1C and Level 2 Products
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About the Optimal Grid for SMOS Level 1C and Level 2 Products

机译:关于SMOS 1C和2级产品的最佳网格

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摘要

Remotely sensed measurements acquired by the European Space Agency's Soil Moisture and Ocean Salinity (SMOS) satellite are processed in a uniform equal-area grid, the Icosahedral Snyder Equal Area (ISEA) 4H9. Brightness temperature measurements are projected onto that grid (the so-called Level 1C), as well as sea surface salinity and soil moisture estimates (Level 2). The ISEA grid has been chosen for its characteristics of equal area and almost uniform intercell spacing. Nevertheless, when considering the SMOS viewing geometry, the measurement footprint size, and the processing applied to those measurements, this choice may be revisited. With this objective, the ISEA 4H9 grid is compared to other equal-area grids with different sizes and orientations with respect to the satellite track. The best configuration resulted to be a 25-km-width grid symmetrical with respect to satellite track. This grid appeared to be better suited for improving SMOS Level 2 retrieval algorithms as well as to serve as input for higher level data production, since it best accounts for the instrument's viewing geometry and substantially reduces the correlation between adjacent grid cells.
机译:由欧洲航天局的土壤湿度和海洋盐度(SMOS)卫星获取的遥感测量结果在一个均匀的等面积网格(二十面体斯奈德相等面积(ISEA)4H9)中进行处理。将亮度温度测量值投影到该网格上(所谓的1C级),以及海面盐度和土壤湿度估算值(2级)。选择ISEA网格是因为其具有相等的面积和几乎均匀的小区间间距的特性。但是,在考虑SMOS的观察几何形状,测量尺寸尺寸以及应用于这些测量的处理时,可以重新选择此选择。出于这个目的,将ISEA 4H9网格与相对于卫星轨道具有不同大小和方向的其他等面积网格进行了比较。最佳配置是相对于卫星轨道对称的25公里宽的网格。该网格似乎最适合改进SMOS 2级检索算法,并且可以用作更高级别数据生成的输入,因为它可以最好地说明仪器的观察几何形状,并且可以大大减少相邻网格单元之间的相关性。

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