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Space-borne Passive Microwave Remote Sensing of Soil Moisture: A Review

机译:星载无源微波对土壤水分的遥感研究进展

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摘要

Soil moisture (SM) plays an important role in groundwater recharge, runoff, air moisture, atmospheric temperature, land degradation, geo-chemical process, surface and sub-surface biota including agriculture, etc. Several studies have reported comparable results of space-borne passive microwaves remote sensing of surface (2 to 5 cm) SM using relationship between volumetric SM and brightness temperature, dielectric constant, polarimetry, roughness parameter, mathematical inferences, etc. However, reported success studies are very site-, image -, overpass time-, model- and situation specific and insufficient to reach at global conclusions. Therefore, reported methods, techniques and algorithms should thoroughly be tested in different biophysical environments to assess applicability in SM retrievals using microwave data captured at different frequencies, polarization, angle, time, etc.
机译:土壤水分(SM)在地下水补给,径流,空气湿度,大气温度,土地退化,地球化学过程,包括农业在内的地表和地下生物区系中起着重要作用。一些研究报告了与空间传播有关的可比结果无源微波利用体积SM和亮度温度,介电常数,极化率,粗糙度参数,数学推论等之间的关系对表面(2至5 cm)SM进行遥感。然而,已报道的成功研究非常涉及现场,图像和越过时间-,模型和情况特定,不足以得出全球结论。因此,报告的方法,技术和算法应在不同的生物物理环境中进行彻底测试,以评估使用在不同频率,极化,角度,时间等条件下捕获的微波数据在SM检索中的适用性。

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