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Evaluation the Contribution of Scattering Effect to the Directional Canopy Emissivity and Brightness Temperature Simulation Based on CE-P Model

机译:基于CE-P模型的散射效应对定向冠层发射率和亮度温度模拟的贡献评估

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A new directional canopy emissivity model (CE-P) based on spectral invariants can separate the multiple scattering effect and single scattering in vegetation canopy. So we can further evaluate the contribution of scattering effect to the canopy emissivity and brightness temperature based on CE-P model. Numerical analysis shows that the contribution of more than three times scattering can be ignored when the leaf (soil) emissivity is no less than 0.90. Then, we optimize CE-P model and obtain the expressions containing the first twice collisions (ε2) and first three times collisions (ε3). The result shows that ε3 can simulate the emissivity in any case with an error less than 0.001. Furthermore, we simulate the brightness temperature distribution using the optimized model and compare it with DART model. The difference between them is less than 0.3K and the R2 of them is over 0.96 in all of the selected samples.
机译:一种新的基于光谱不变性的定向冠层发射率模型(CE-P)可以将植被冠层的多重散射效应和单一散射区分开。因此,我们可以基于CE-P模型进一步评估散射效应对冠层发射率和亮度温度的贡献。数值分析表明,当叶片(土壤)的发射率不小于0.90时,超过三倍散射的贡献可以忽略不计。然后,我们优化CE-P模型并获得包含前两次碰撞(ε2)和前三次碰撞(ε3)的表达式。结果表明,ε3可以在任何情况下模拟发射率,误差小于0.001。此外,我们使用优化的模型来模拟亮度温度分布,并将其与DART模型进行比较。它们之间的差小于0.3K,R 2 在所有选定的样本中,它们的均值超过0.96。

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