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Preliminary Results of a GNSS-R Simulation to Sense Canopy Parameters

机译:GNSS-R模拟的初步结果以探测冠层参数

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Soil moisture (SM) plays a significant role on the Earth's water, energy, and carbon transfers. Thus, global sensing of SM is vital. Conventional active and passive monostatic instruments have been used for SM retrieval for decades. For the sake of increasing spatiotemporal resolutions and decreasing costs, Global Navigation Satellite System Reflectometry (GNSS-R) have been examined recently. However, the high number of dynamic factors that affect GNSS-R observables in land applications make the use of this technique challenging. In this paper, we aim to present our preliminary observations about simulated GNSS-R signatures through a vegetated terrain in order to unveil GNSS-R sensitivity to dynamic land parameters. We exploited our recently developed coherent bistatic vegetation scattering model (SCoBi-Veg) for these simulations. We modelled a full growing season of corn field by using in situ measurement data. We observed received power variations as a function of observation angle and corn growth stage. First findings indicate the dominance of the coherent contribution over incoherent one. Results also demonstrate the effect of the growth stages on the received power.
机译:土壤水分(SM)对地球的水,能量和碳转移起着重要作用。因此,SM的全球感性至关重要。常规的主动和被动单体仪器已用于几十年来的SM检索。为了增加时空分辨率和降低成本,最近已经检查了全球导航卫星系统反射仪(GNSS-R)。然而,影响土地应用中GNSS-R观察到的大量动态因素使得这种技术具有挑战性。在本文中,我们旨在通过植被地形展示我们对模拟GNSS-R签名的初步观察,以便揭示GNSS-R对动态土地参数的敏感性。我们利用了我们最近开发的相干的双孔植被散射模型(Scobi-veg),用于这些模拟。我们通过使用原位测量数据建模了一个完整的玉米田季节。我们观察到作为观察角度和玉米生长阶段的函数接受的功率变化。第一个调查结果表明了对不连贯的一致贡献的主导地位。结果还证明了生长阶段对所接收的功率的影响。

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