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首页> 外文期刊>Geoscience and Remote Sensing Letters, IEEE >Remote Sensing of Soil Moisture Using the Propagation of Loran-C Navigation Signals
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Remote Sensing of Soil Moisture Using the Propagation of Loran-C Navigation Signals

机译:Loran-C导航信号的传播对土壤水分的遥感

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The fractional water content of soil plays a central role in the complex interactions between the Earth and its hydrological cycle. However, obtaining continuous measurements of wide-area soil moisture is difficult. In our study, a novel method for the remote sensing of soil moisture is explored that makes use of the variations in time delay on Loran-C surface waves. An analysis was carried out using such signals recorded over a three-week period at the University of Bath, Bath, U.K., from a Loran-C transmitting station in Northern France. Model data from the European Centre for Medium-Range Weather Forecasts (ECMWF) were used for calculation, calibration, and intercomparison. Reasonable correspondence between the soil moisture estimated using the Loran-C method and the ECMWF product was found for a soil depth of 0–28 cm.
机译:土壤的分数水分含量在地球与其水文循环之间的复杂相互作用中起着核心作用。但是,很难连续测量广域土壤的水分。在我们的研究中,探索了一种利用Loran-C面波的时延变化来遥感土壤水分的新方法。使用从法国北部的Loran-C发射站在英国巴斯大学的巴斯大学进行的为期三周的记录信号进行分析。欧洲中距离天气预报中心(ECMWF)的模型数据用于计算,校准和比对。发现在土壤深度为0–28 cm时,用Loran-C方法估算的土壤水分与ECMWF产品之间存在合理的对应关系。

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