首页> 外文期刊>Geoscience and Remote Sensing Letters, IEEE >Regression Kriging-Based Upscaling of Soil Moisture Measurements From a Wireless Sensor Network and Multiresource Remote Sensing Information Over Heterogeneous Cropland
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Regression Kriging-Based Upscaling of Soil Moisture Measurements From a Wireless Sensor Network and Multiresource Remote Sensing Information Over Heterogeneous Cropland

机译:基于回归Kriging的非均质农田无线传感器网络和多资源遥感信息的土壤湿度测量

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摘要

The ground truth estimated by in situ measurements is important for accurately evaluating retrieved remote sensing products, particularly over heterogeneous land surfaces. This letter analyzes the role of multisource remote sensing observations on the upscaling of soil moisture observed by a wireless sensor network at the pixel scale via the regression kriging (RK) method. Three types of auxiliary remote sensing information are employed, including Advanced Spaceborne Thermal Emission and Reflection Radiometer (ASTER) Temperature Vegetation Dryness Index (TVDI; 90 m), Polarimetric L-band Multiband Radiometer brightness temperature (700 m), and Moderate Resolution Image Spectroradiometer TVDI (1000 m). Moreover, a comparison with the ordinary kriging method is analyzed. The spatial inferences show that the RK method is more accurate and that its spatial pattern is more consistent with the auxiliary data when the trend is successfully removed, particularly when spatial continuity is destroyed by irrigation. The ASTER TVDI has a higher resolution and stronger correlation with soil moisture and yields more accurate interpolation results than the other types of remote sensing information. Although medium-resolution data do not substantially contribute to capture the spatial patterns of soil moisture, such data may still improve the prediction accuracy.
机译:通过原位测量值估算的地面真相对于准确评估回收的遥感产品(特别是在异类陆地表面上)非常重要。这封信通过回归克里金(RK)方法分析了多源遥感观测对无线传感器网络在像素尺度上观测到的土壤湿度升高的作用。使用三种类型的辅助遥感信息,包括高级星载热发射和反射辐射仪(ASTER)温度植被干燥指数(TVDI; 90 m),极化L波段多波段辐射仪亮度温度(700 m)和中等分辨率图像光谱仪TVDI(1000 m)。此外,分析了与普通克里金法的比较。空间推论表明,当成功消除趋势时,尤其是当灌溉破坏了空间连续性时,RK方法更为准确,并且其空间模式与辅助数据更加一致。与其他类型的遥感信息相比,ASTER TVDI具有更高的分辨率和与土壤水分的更强相关性,并且可以产生更准确的插值结果。尽管中等分辨率的数据并不能对捕获土壤水分的空间格局做出实质性贡献,但这些数据仍可以提高预测精度。

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