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Modeling specular reflectance and polarization in DART model for simulating remote sensing images of natural and urban landscapes

机译:在DART模型中对镜面反射率和偏振进行建模,以模拟自然和城市景观的遥感图像

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The need of better accuracy to analyze remote sensing (RS) data and radiative budget (RB) of Earth surfaces explains the demand of physical models of RS and RB data. DART (Discrete Anisotropic Radiative Transfer) model is probably the most comprehensive three-dimensional (3D) physical model. Indeed, with original ray tracking and Monte Carlo methods for tracking radiation in the Earth and atmosphere from visible to thermal infrared wavelengths, it simulates the 3D RB and acquisitions of terrain / RS imaging radiometers and laser scanners, for any urban / natural landscape and any experimental / instrumental configuration. Paul Sabatier delivers free licenses for research and teaching activities. After introducing DART theory, we present recent advances: simulation of LiDAR and airborne sensors, and modeling of specular interaction and polarization.
机译:需要更高的精度来分析地球表面的遥感(RS)数据和辐射预算(RB),这说明了RS和RB数据的物理模型的需求。 DART(离散各向异性辐射传输)模型可能是最全面的三维(3D)物理模型。确实,利用原始的射线跟踪和蒙特卡洛方法来跟踪地球和大气中从可见光到热红外波长的辐射,它可以模拟3D RB并采集地形/ RS成像辐射计和激光扫描仪,适用于任何城市/自然景观以及任何实验/仪器配置。 Paul Sabatier为研究和教学活动提供免费许可证。在介绍DART理论之后,我们介绍了最新的进展:LiDAR和机载传感器的仿真,以及镜面相互作用和偏振的建模。

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