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首页> 外文期刊>Selected Topics in Applied Earth Observations and Remote Sensing, IEEE Journal of >Soil Moisture Mapping Using Combined Active/Passive Microwave Observations Over the East of the Netherlands
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Soil Moisture Mapping Using Combined Active/Passive Microwave Observations Over the East of the Netherlands

机译:利用荷兰东部的主动/被动微波观测资料对土壤湿度进行测绘

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A coarse resolution soil moisture product is downscaled to 1, 5, and 10 km using synthetic aperture radar (SAR) observations acquired over the east of the Netherlands. The combination of phased array L-band SAR (PALSAR) backscatter and VUA-NASA C-band Advanced Microwave Scanning Radiometer-Earth Observing System (AMSR-E) soil moisture product is adopted to mimic the radar/radiometer setup as will be available from NASA’s soil moisture active passive (SMAP) mission. The validation of retrievals is based on measurements collected by a sparse network of 20 stations distributed across km study area selected as one of the key validation sites for the SMAP soil moisture products. Reasonable agreements between the measurements and soil moisture retrieved at 1-, 5-, and 10-km resolution are found that lead to coefficients of determination of 0.37, 0.36, and 0.36, respectively. The retrievals, however, severely overestimate the measured soil moisture, which is attributed to the well-known positive bias of the selected AMSR-E product. After bias-correction, root mean squared differences reach as low as for individual locations and are 0.067, 0.068, and on average for the soil moisture retrieved at 1-, 5-, and 10-km resolutions, respectively. These error levels do not satisfy SMAP’s targeted accuracy of , but the radar/radiometer setup as well as the characterization of the soil moisture conditions representative are not optimal. On the other hand, it is demonstrated that the sequence of soil moisture maps does captu- e valuable hydrological and hydrometeorological information.
机译:利用在荷兰东部获得的合成孔径雷达(SAR)观测值,将粗分辨率的土壤水分产品缩小为1、5和10公里。相控阵L波段SAR(PALSAR)背向散射和VUA-NASA C波段高级微波扫描辐射计-地球观测系统(AMSR-E)结合使用,以模拟雷达/辐射计的设置,可从NASA的土壤水分主动被动(SMAP)任务。取回的验证基于稀疏网络收集的测量结果,该稀疏网络由分布在km个研究区域中的20个站点组成,这些站点被选为SMAP土壤水分产品的关键验证站点之一。发现测量值与以1、5和10 km分辨率获取的土壤水分之间的合理协议,导致确定系数分别为0.37、0.36和0.36。但是,这些检索结果严重高估了测得的土壤湿度,这归因于所选AMSR-E产品的众所周知的正偏差。偏差校正后,均方根差分别达到单个位置的均方根差,分别为1、5和10 km分辨率下的土壤水分的均方根差分别为0.067、0.068和平均。这些误差等级不能满足SMAP的目标精度,但是雷达/辐射计的设置以及代表土壤湿度条件的特征并不是最佳的。另一方面,证明了土壤水分图的序列确实捕获了宝贵的水文和水文气象信息。

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