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首页> 外文期刊>IEEE Transactions on Geoscience and Remote Sensing >A Preliminary Evaluation of the SMAP Radiometer Soil Moisture Product Over United States and Europe Using Ground-Based Measurements
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A Preliminary Evaluation of the SMAP Radiometer Soil Moisture Product Over United States and Europe Using Ground-Based Measurements

机译:使用地面测量对美国和欧洲SMAP辐射计土壤水分产品进行的初步评估

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The Soil Moisture Active Passive (SMAP) mission, which is the newest L-band satellite that is specifically designed for soil moisture monitoring, was launched on January 31, 2015. A beta quality version of the SMAP radiometer soil moisture product was recently released to the public. It is crucial to evaluate the reliability of this product before it can be routinely used in hydrometeorological studies at a global scale. In this paper, we carried out a preliminary evaluation of the SMAP radiometer soil moisture product against in situ measurements collected from three networks that cover different climatic and land surface conditions, including two dense networks established in the U.S. and Finland, and one sparse network set up in Romania. Results show that the SMAP soil moisture product is in good agreement with the in situ measurements, although it exhibits dry or wet bias at different network regions. It well reproduces the temporal evolution and anomalies of the observed soil moisture with a favorable correlation greater than 0.7. The overall ubRMSE (unbiased root mean square error) of SMAP product is 0.036 m3 m−3, well within the mission requirement of 0.04 m3 m−3. The error sources of SMAP soil moisture product may be associated with the parameterization of vegetation and surface roughness but still needs to be tested and confirmed in more extent. Considering that the algorithms are still under refinement, it can be reasonably expected that hydrometeorological applications will benefit from the SMAP radiometer soil moisture product.
机译:“土壤水分主动无源”(SMAP)任务是专为土壤水分监测而设计的最新L波段卫星,已于2015年1月31日发射。SMAP辐射计土壤水分产品的Beta版最近发布到公众。在将该产品常规用于全球范围的水文气象研究之前,评估该产品的可靠性至关重要。在本文中,我们针对SMAP辐射计土壤湿度产品,对从三个覆盖不同气候和陆地表面条件的网络收集的原位测量结果进行了初步评估,其中包括在美国和芬兰建立的两个密集网络和一个稀疏网络集在罗马尼亚。结果表明,SMAP土壤水分产物与原位测量结果吻合良好,尽管它在不同的网络区域表现出干偏或湿偏。它很好地再现了观测到的土壤水分的时间演变和异常,其相关系数大于0.7。 SMAP产品的整体ubRMSE(无偏均方根误差)为0.036 m3 m-3,完全在0.04 m3 m-3的任务要求之内。 SMAP土壤水分产物的误差源可能与植被和表面粗糙度的参数化有关,但仍需要进行更大程度的测试和确认。考虑到算法仍在完善中,可以合理预期水文气象应用将从SMAP辐射计土壤湿度产品中受益。

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