首页> 外文会议>International Workshop on Wave Propagation, Scattering and Emission(WPSE2003); 20030601-04; Shanghai(CN) >Scattering and Emission from I nhomogeneous Vegetation Canopy and Alien Target by Using Three-Dimensional Vector Radiative Transfer (3D-VRT) Equation
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Scattering and Emission from I nhomogeneous Vegetation Canopy and Alien Target by Using Three-Dimensional Vector Radiative Transfer (3D-VRT) Equation

机译:利用三维矢量辐射传输(3D-VRT)方程从非均质植被冠层和外来目标散射和发射

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摘要

To solve 3D-VRT equation for the model of spatially inhomogeneous scatter media, the finite enclosure of the scatter media is geometrically divided, in both the vertical z and horizontal (x,y) directions, to form very thin multi-boxes. The zero-th order emission, first-order Mueller matrix of each thin box and an iterative approach of high-order radiative transfer are applied to deriving high-order scattering and emission of whole inhomogeneous scatter media. Numerical results of polarized brightness temperature at microwave frequency and under different radiometer's resolutions from inhomogeneous scatter model such as vegetation canopy and embedded alien target are simulated and discussed.
机译:为了解决空间非均匀散射介质模型的3D-VRT方程,在垂直z方向和水平(x,y)方向上将散射介质的有限包络进行几何划分,以形成非常薄的多框。将每个薄盒的零阶发射,一阶Mueller矩阵和高阶辐射转移的迭代方法应用于推导整个非均匀散射介质的高阶散射和发射。从植被冠层和嵌入的外星目标等非均匀散射模型中,模拟并讨论了微波频率和不同辐射计分辨率下偏振亮度温度的数值结果。

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