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首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >Extending the SMAP 9-km soil moisture product using a spatio-temporal fusion model
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Extending the SMAP 9-km soil moisture product using a spatio-temporal fusion model

机译:使用时空融合模型将SMAP 9 km土壤水分产品延伸

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SMAP satellite has provided us the first 9-km global soil moisture (SM) product, which is retrieved from the combined L-band radiometer and radar observations with a balance between accuracy and resolution. However, SMAP's radar failed on July 7, 2015, making the continuous production of the 9-km SM impossible, which has considerably affected the application of SMAP in hydrological monitoring. This study was aimed at extending the SMAP 9-km SM by developing a non-local filter based spatio-temporal fusion model (STFM). With the auxiliary of the historical 9-kmand 36-km products, the STFM was used to downscale the daily 36-km product to 9-km. Two-year 9-km product was estimated using STFM in the study. It shows that the estimated product has the detailed information retention of 9-km product and the comparable accuracy with 36-km product, which makes it feasible to improve the application potential of the current SMAP SM products.
机译:Smap Satellite为我们提供了前9公里的全球土壤水分(SM)产品,从组合的L波段辐射计和雷达观察结果中取出,在精度和分辨率之间的平衡。 然而,2015年7月7日的SMAP的雷达失败,使得连续生产9公里的SM不可能,这有很大影响了液体在水文监测中的应用。 本研究旨在通过开发非局部滤波器的时空融合模型(STFM)来扩展SMAP 9-KM SM。 随着历史9毫米的辅助36公里产品,STFM用于将每日36公里的产品缩小至9公里。 使用STFM在研究中估算了两年的9公里产品。 它表明,估计的产品具有9公里产品的详细信息保留和具有36 km产品的可比精度,可加于改善当前SMAP SM产品的应用潜力。

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