首页> 外文会议>2011 IEEE International Geoscience Remote Sensing Symposium >A synergetic use of observations from modis, SEVIRI MSG, ASAR and AMSR-E to infer a daily soil moisture index
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A synergetic use of observations from modis, SEVIRI MSG, ASAR and AMSR-E to infer a daily soil moisture index

机译:协同使用modis,SEVIRI MSG,ASAR和AMSR-E的观测结果推断每日土壤湿度指数

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The objective of this study is to infer a soil moisture index from an approach mainly based on the concept of apparent thermal inertia (ATI). To reduce the effect of spurious variability and cloud presence, soil moisture temporal trend derived from passive microwave based product, namely the NASA AMSR-E-soil moisture product, are used as a tool to filter the data. The AMSR-E data due to their coarse resolution can be considered as natural “low pass filter” thus reducing the effect of noise. Furthermore, the approach considers the soil moisture estimates derived from SAR sensors and use them to spatially calibrate the information coming from the optical data. The algorithm has been validated over two different test areas in Italy and France where ground truth measurements were available. Four main clusters of ATI have been identified and classified into 4 different levels of wetness. In densely vegetated areas, only three classes of soil moisture were distinguishable. The comparison with ground measurements indicates an accuracy of around 88% on the Italian test sites and of 73% on the French test sites, the last mainly characterized by densely vegetated fields.
机译:这项研究的目的是通过一种主要基于表观热惯性(ATI)概念的方法来推断土壤湿度指数。为了减少杂散性变化和云的存在,源自被动微波基产品(即NASA AMSR-E-土壤水分产品)的土壤水分时间趋势被用作过滤数据的工具。由于AMSR-E数据的分辨率较差,可以将其视为自然的“低通滤波器”,从而降低了噪声的影响。此外,该方法考虑了从SAR传感器获得的土壤湿度估计值,并使用它们对来自光学数据的信息进行空间校准。该算法已在意大利和法国的两个提供地面真实性测量的测试区域进行了验证。已经确定了ATI的四个主要簇,并将其分为4种不同的湿度水平。在植被茂密的地区,只有三类土壤水分是可区分的。与地面测量结果的比较表明,在意大利试验场上,其精度约为88%,在法国试验场上,其精度为73%,最后一个主要特征是植被茂密。

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