Estimation of canopy attenuation for active/passive microwave soil moisture retrieval algorithms

M. Kurum, R. Lang, P. Oneill, A. Joseph, T. Jackson, M. Cosh
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引用次数: 5

Abstract

This paper discusses the importance of the proper characterization of scattering and attenuation in trees needed for accurate retrieval of soil moisture in the presence of trees. Emphasis is placed on determining an accurate estimation of the propagation properties of a vegetation canopy using the complex frequency correlation function (FCF). A new technique for determining the canopy attenuation that uses the measured stepped frequency radar backscatter response is proposed. It makes use of the details found in a transient solution where the canopy (volume scattering) and the tree-ground (double interaction) effects appear at different times. The proposed technique is based on separating the backscattering sources within a forest canopy in the time response. The technique has been used with L band data collected over deciduous trees to verify that the algorithm results match the simulated data.
主动/被动微波土壤水分反演算法的冠层衰减估计
本文讨论了正确表征树木散射和衰减的重要性,这是准确获取树木存在下的土壤水分所必需的。重点是利用复频率相关函数(FCF)确定对植被冠层传播特性的准确估计。提出了一种利用测量的阶跃频率雷达后向散射响应来确定冠层衰减的新方法。它利用了在瞬态解中发现的细节,其中树冠(体积散射)和树木-地面(双重相互作用)效应在不同时间出现。该技术是基于时间响应的森林冠层内后向散射源的分离。将该技术应用于落叶树上的L波段数据,验证了算法结果与模拟数据的匹配。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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