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Physics-Based Modeling of Active-Passive Microwave Covariations for Geophysical Retrievals

机译:地球物理检索的主动-被动微波协方差基于物理的建模

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Combined active-passive remote sensing has the potential for capturing the relative advantage of each sensing approach in geophysical retrievals. One cornerstone of combined active-passive microwave sensing is the modeling of the covariation of active and passive signals, which arise from equivalent sensitivities of both sensor types to changes in geophysical properties. In this research contribution, we propose a physics-based active-passive combination of active and passive microwave observations based on Kirchhoff's law of energy conservation. This allows establishing a physics-based forward model as well as a fully data-driven, single-pass retrieval methodology for active-passive microwave covariation. The forward model and the retrieval approach are adaptable to different sensor characteristics (incidence angle, frequency & polarization). The theoretical (forward model) as well as applied (retrieval method) physics-based covariation framework is tested with SMAP (LL) and SMAP/Sentinel-1 (LC) data to reveal potentials and constraints for active-passive microwave sensing. As a result of the conducted study, a linear functional relationship between active and passive microwave observations (e.g. assumed for the SMAP mission) is confirmed, if higher-order scattering can be omitted.
机译:组合的主动-被动遥感技术有可能在地球物理检索中捕捉每种传感方法的相对优势。主动-被动微波传感组合的一个基石是主动和被动信号的协变模型,这是由于两种传感器类型对地球物理特性变化的等效敏感性引起的。在这项研究成果中,我们基于基尔霍夫能量守恒定律提出了一种基于物理的主动与被动微波观测的主动-被动组合。这允许建立基于物理学的正向模型以及用于主动-被动微波协变的完全数据驱动的单遍检索方法。正向模型和检索方法适用于不同的传感器特性(入射角,频率和极化)。基于SMAP(LL)和SMAP / Sentinel-1(LC)数据对基于物理学的理论(正向模型)以及应用的(检索方法)协变框架进行了测试,以揭示主动-被动微波传感的潜力和局限性。作为进行研究的结果,如果可以省略高阶散射,则可以确认主动和被动微波观测值之间的线性函数关系(例如,假设用于SMAP任务)。

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