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KU-Band Sensitivity to Soil Moisture. An Evaluation Study for Monitoring Temporal Soil Moisture Change Detection Over the NAFE06 Study Area

机译:KU波带对土壤水分的敏感性。 Nafe06研究区监测颞土壤水分变化检测的评价研究

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The combination of radiometer and radar observations is a very promising technique for spatial disaggregation of soil moisture. The enhanced QuikSCAT sigma-0 product (2.225 km) offers a possibility for overcoming the temporal and spatial limitations of the available radar systems. The current study investigates QuikSCAT sensitivity to soil moisture and its capability to accurately monitor and capture change in soil moisture. The research was undertaken for the National Airborne Field Experiment area located in the Murrumbidgee catchment, SE Australia. Validation of the temporal change detection analysis was undertaken using an airborne soil moisture product derived from the Polarimetric L-band Multibeam Radiometer (PLMR). The main propose of the PLMR use was to assess accuracy in terms of spatial patterns distribution. The results reveal expected temporal variability and adequate response of the active sensor to change in meteorological conditions. The presence of irrigation and standing water (rice fields) in the region challenges the spatial agreement throughout the study area.
机译:辐射计和雷达观测的组合是一种非常有希望的土壤水分分解的技术。增强型Quikscat Sigma-0产品(2.225公里)提供了克服可用雷达系统的时间和空间限制的可能性。目前的研究调查了Quikscat对土壤水分的敏感性及其能力,以准确监测和捕获土壤水分的变化。该研究是为位于澳大利亚村庄穆鲁维奇集水区的国家空中野外实验区进行了研究。使用衍生自偏振L波段多辐射计(PLMR)的空气载体水分产品进行时间变化检测分析的验证。 PLMR使用的主要建议是评估空间模式分布方面的准确性。结果揭示了活性传感器对气象条件变化的预期时间变异性和足够的响应。该地区的灌溉和常设水(稻田)的存在挑战整个研究区域的空间协议。

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