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Ground-Based Remote Sensing of Soil Moisture Using Lower Frequency Microwave Radiometers

机译:利用较低频率微波辐射尺度的地面遥感土壤湿度

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The soil is the interface between the biology and geology forming the living skin of the earth, and the water in it keeps the earth alive. Timely information on soil moisture is useful to monitor and forecast agricultural droughts, wildfires, flood risk areas, landslides, etc., Soil moisture measurement using L-band radiometry is now widely accepted as the state-of-art remote sensing approach, and has been adopted by both the soil moisture dedicated satellite missions – Soil Moisture and Ocean Salinity (SMOS) and Soil Moisture Active Passive (SMAP). P-band, which is a longer wavelength measurement, provides the potential to retrieve deeper soil moisture information and to do so more accurately due to reduced soil roughness and vegetation effects. There are very few works using P-band radiometer [1, 2] conducted at the USDA / Beltsville Agricultural Research Centre employing truck-mounted L-, C- and P- band radiometers.
机译:土壤是形成地球生物皮肤的生物学和地质之间的界面,而在其中的水保持了地球活着。及时有关土壤水分的信息可用于监测和预测农业干旱,野火,洪水风险区域,山体滑坡等。,使用L波段辐射测量的土壤湿度测量现在被广泛接受为最先进的遥感方法,并且具有土壤水分专用卫星任务 - 土壤水分和海洋盐水(SMOS)和土壤水分活性(SMAP)采用。 P频带是更长的波长测量,提供了由于土壤粗糙度和植被效应减少而更准确地检索更深层次的土壤水分信息。使用在USDA / Beltsville农业研究中心进行的P-Band Radiometer [1,2]的作品非常少,采用卡车安装的L-,C-和P场辐射率。

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