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Modeling subpixel orientation effects for hyperspectral demixing

机译:为高光谱混合建模亚像素取向效应

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摘要

The radiance spectrum corresponding to a single pixel in an airborne or space-based hyperspectral image is dependent on the reflectance spectra and orientations of the material surfaces within the pixel area. We develop a hyperspectral demixing algorithm that estimates the pixel area fractions of multiple materials present within a pixel. The algorithm exploits a nonlinear physics-based image formation model that allows surfaces with multiple orientations within the pixel area. Geometric constraints are derived in conjunction with the image formation model. The algorithm involves solving a constrained nonlinear optimization problem to estimate the pixel area fractions and the surface orientation parameters. An experiment using simulated radiance spectra is presented to demonstrate the utility of the algorithm.
机译:对应于机载或基于空间的高光谱图像中单个像素的辐射光谱取决于像素区域内材料表面的反射光谱和方向。我们开发了一种高光谱混合算法,可估算像素中存在的多种材料的像素面积分数。该算法利用了基于非线性物理学的图像形成模型,该模型允许在像素区域内具有多个方向的表面。结合图像形成模型导出几何约束。该算法包括解决约束非线性优化问题以估计像素面积分数和表面取向参数。提出了使用模拟辐射光谱的实验,以证明该算法的实用性。

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