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Probing Soil Moisture Up to Root-Zone by Using Multiple Signals of Opportunity

机译:利用多种机会信号探究土壤水分直至根区

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Routine, repeatable radar measurements of soil moisture are expected to be achievable through the use of frequencies with penetration depths that reach the root-zone of given vegetation structures within soil. Due to the size, weight, power, cost, and legal constraints of creating spaceborne radar transmitters, the practice of reutilizing existing satellite navigation/communication systems for spaceborne radar applications is gaining attention from research communities under the title "Signal of Opportunity" (SoOp). The use of SoOp transmitters as a free source of illuminators is expected to be a viable tool for the remote sensing of soil moisture at depths below 5 centimeters. However, the returns of a radar signal can be representative of many types of soil moisture profiles, and the returned radar signals do not indicate the depth of the contained soil moisture. To this end, this paper is intended to better understand the various effects that radar parameters have on a returned radar signal given a known, simple soil moisture profile in order to help determine the feasibility of using multiple (SoOp) transmitters to determine soil moisture profiles. In order to accomplish this, the recently developed SoOp Coherent Bistatic (SCoBi) scattering model is used to determine the relative permittivity of a given soil moisture profile as well as determine the complex reflection coefficients of the incident signals upon the surface.
机译:通过使用穿透深度达到土壤中给定植被结构根部区域的频率,有望实现对土壤水分的常规,可重复的雷达测量。由于创建星载雷达发射机的尺寸,重量,功率,成本和法律限制,将现有卫星导航/通信系统重新用于星载雷达应用的做法正以“机会信号”(SoOp)的名称受到研究界的关注。 )。预计将SoOp发射器用作照明器的免费来源,将是一种用于感测5厘米以下深度的土壤水分的可行工具。但是,雷达信号的返回可以代表许多类型的土壤水分剖面,并且返回的雷达信号并不指示所包含的土壤水分的深度。为此,本文旨在更好地了解给定已知的简单土壤湿度剖面的雷达参数对返回的雷达信号的各种影响,以帮助确定使用多个(SoOp)变送器确定土壤湿度剖面的可行性。为此,最近开发的SoOp相干双基地(SCoBi)散射模型用于确定给定土壤水分剖面的相对介电常数,并确定入射信号在表面上的复反射系数。

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