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Radiative transfer model for microwave bistatic scattering from forest canopies

机译:林冠层微波双基地散射的辐射传递模型

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A bistatic forest scattering model is developed to simulate scattering coefficients from forest canopies. The model is based on the Michigan Microwave Canopy Scattering (MIMICS) model (hence called Bi-MIMICS) and uses radiative transfer theory, where the first-order fully polarimetric transformation matrix is used. Bistatic radar systems offer advantages over monostatic radar systems because of the additional information provided by the diversity of the geometry. By simulating the forest canopy scattering from multiple viewpoints, we can better understand how the forest scatterers' shape, orientation, density, and permittivity affect the canopy scattering. Bi-MIMICS is parametrized using selected forest stands with different canopy compositions and structure. The simulation results show that bistatic scattering is more sensitive to forest biomass changes than backscattering. Analyzing scattering contributions from different parts of the canopy gives us a better understanding of the microwave's interaction with the tree components. The ground effects can also be studied. Knowledge of the canopy's bistatic scattering behavior combined with additional synthetic aperture radar measurements can be used to improve forest parameter retrievals. The simulation results of the model provide the required information for the design of future bistatic radar systems for forest sensing applications.
机译:建立了双基地森林散射模型,以模拟林冠层的散射系数。该模型基于密歇根州微波冠层散射(MIMICS)模型(因此称为Bi-MIMICS),并使用辐射传递理论,其中使用了一阶全偏振变换矩阵。由于几何形状的多样性提供了更多信息,因此双基地雷达系统比单基地雷达系统更具优势。通过从多个角度模拟森林冠层散射,我们可以更好地了解森林散射体的形状,方向,密度和介电常数如何影响冠层散射。 Bi-MIMICS使用选定的林冠具有不同的冠层组成和结构进行参数化。模拟结果表明,双基地散射对森林生物量变化的敏感性比向后散射更为敏感。分析来自冠层不同部分的散射贡献可以使我们更好地了解微波与树木组件的相互作用。地面效应也可以研究。有关树冠的双基地散射行为的知识以及其他合成孔径雷达的测量结果可用于改善森林参数的检索。该模型的仿真结果为森林感测应用的未来双基地雷达系统设计提供了必要的信息。

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