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Contribution of leaf specular reflection to canopy reflectance under black soil case using stochastic radiative transfer model

机译:用随机辐射转移模型,叶片镜面反射对黑土壳下的冠层反射率的贡献

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摘要

Numerous canopy radiative transfer models have been proposed based on the assumption of "ideal bi-Lambertian leaves" with the aim of simplifying the interactions between photons and vegetation canopies. This assumption may cause discrepancy between the simulated and measured canopy bidirectional reflectance factor (BRF). Few studies have been devoted to evaluate the impacts of such assumption on simulation of canopy BRF at a high-to-medium spatial resolution (similar to 30 m). This paper focuses on quantifying the contribution of leaf specular reflection on the estimation of canopy BRF under a black soil case using one of the most efficient radiative transfer models, the stochastic radiative transfer model. Analyses of field and satellite data collected over the boreal Hyytiala forest in Finland show that leaf specular reflection may lead to errors of up to 33.1% at 550 nm and 32.8% at 650 nm in terms of relative root mean square error. The results suggest that, in order to minimize these errors, leaf specular reflection should be accounted for in modeling BRF.
机译:已经基于“理想的双灯泡叶”的假设提出了许多顶篷辐射转移模型,其目的在于简化光子和植被檐篷之间的相互作用。该假设可能导致模拟和测量的冠层双向反射率因子(BRF)之间的差异。少量研究已经致力于评估这种假设对冠层BRF的模拟的影响(类似于30米)。本文侧重于使用最有效的辐射转移模型,随机辐射转移模型之一来量化叶镜面反射对瓣膜镜面反射对冠层BRF估计的贡献。在芬兰的北方州州州州植物森林中收集的田间和卫星数据的分析表明,在相对根均方误差方面,叶片镜面反射可能导致550nm处的误差为550nm,在650nm处,32.8%。结果表明,为了最大限度地减少这些误差,应在建模BRF中计算叶镜面反射。

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