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Validation of AMSR-E Soil Moisture Products in Xilinhot Grassland

机译:Xilinhot Grassland验证AMSR-E土壤水分产品

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Soil moisture is a primary product of Advanced Microwave Scanning Radiometer for EOS (AMSR-E) which onboard Aqua satellite. AMSR-E soil moisture product provides us global soil moisture dataset from 2002 to present. It is known to all that validation is a big problem in the use of satellite remote sensing soil moisture product. The instantaneous field of view (IFOV) of different channel of AMSR-E ranges from 10 km to 50 km. For the lower frequency which is more sensitive to soil moisture, IFOV is larger. This means that a single point of AMSR-E soil moisture product contain average soil moisture of hundreds of km2 land surface. The traditional soil moisture measurement only gives us a single point soil moisture measurement result which is not equal to large area soil moisture. In this paper, we present an experiment to validate the soil moisture product of AMSR-E. The experiment was carried out from July 15, 2008 to September 30, 2008. 9. The location of the experiment is in Xilinhot grassland, Neimeng province, China. During the former period, we put 9 soil moisture and temperature measurement systems (ECH2O) in an area of about 3kmx3km. We selected this area because it's a very typical area in the Xilinhot grassland, which contain most land cover types and terrain types in the grassland. For each point, 5 layers of soil moisture and temperature were measured by ECH2O. The 5 layers are 2cm, 5cm, 10cm, 20cm and 50cm respectively. Considering the penetration depth of AMSR-E, 2cm measurements were used to do the validation. The location of the 9 ECH2O is very dispersive and the elevations of them are very different. Measurement result shows that the main factor that affects the soil moisture distribution is elevation. In grassland, soil moisture in higher place is always smaller than that of lower place. Which means a single soil moisture measurement is not suit for the soil moisture used purpose. Precipitation measurement was also done in this area during the experiment period. Result shows that the precipitation is more effective to the top layers soil moisture than the bottom layers, In our sites, only 2cm and 5cm layers are affected by the precipitation. Other layer didn't change much during the whole period. The average soil moisture measurement result in this area during the experiment is 11.8cm3/cm3, while the soil moisture product of AMSR-E in this area shows that the average soil moisture during this period is 13.3cm3/cm3. The RMSE of them is 3.7cm3/cm3. Result show that AMSR-E soil moisture product has a good accuracy in the grassland of north China.
机译:土壤湿度是在浴室卫星上的EOS(AMSR-E)的先进微波扫描辐射计的主要产品。 AMSR-E土壤水分产品从2002年提供美国全球土壤水分数据集。众所周知,验证是在使用卫星遥感土壤水分产品中的一个大问题。 AMSR-E不同通道的瞬时视野(IFOV)从10公里到50公里。对于对土壤水分更敏感的较低频率,IFOV更大。这意味着单点AMSR-E土壤水分产品含有数百km2土地表面的平均土壤水分。传统的土壤湿度测量仅给我们一个单点土壤水分测量结果,不等于大面积土壤水分。在本文中,我们展示了验证AMSR-E的土壤水分产物的实验。该实验是从2008年7月15日至2008年9月30日进行的.9。实验的位置是在中国内蒙古的Xilinhot草原。在前一段期间,我们将9种土壤水分和温度测量系统(ECH2O)放在约3kmx3km的面积。我们选择了这一领域,因为它是Xilinhot草原的一个非常典型的区域,它在草地上包含大多数土地覆盖类型和地形类型。对于每个点,通过ECH 2 O测量5层土壤水分和温度。 5层分别为2cm,5cm,10cm,20cm和50cm。考虑到AMSR-E的渗透深度,使用2cm测量来进行验证。 9 ech2o的位置非常分散,它们的高度非常不同。测量结果表明,影响土壤水分分布的主要因素是升高。在草地,较高位置的土壤水分总是小于下方的土壤水分。这意味着一种土壤水分测量不适合土壤湿度的用途。在实验期间也在该区域进行沉淀测量。结果表明,沉淀对顶层土壤水分比底层更有效,在我们的地点,只有2cm和5cm的层受到沉淀的影响。在整个时期,其他图层没有太多变化。在实验期间,该区域的平均土壤水分测量结果为11.8cm3 / cm 3,而该区域中AMSR-E的土壤水分产物表明,此期间的平均土壤水分为13.3cm3 / cm3。它们的RMSE是3.7cm3 / cm3。结果表明,AMSR-E土水分产品在华北地区具有良好的准确性。

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