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Extended linear hyperspectral mixing models

机译:扩展线性高光谱混合模型

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A mixture model for hyperspectral data describes the underlying physics of how constituent substances in a scene affect each other to produce radiance received at each detector pixel. In the linear models the total scene is portrayed as a checkerboard mixture of reflecting surfaces containing fractional abundances of the constituent substances. The radiance measured at a detector pixel is modeled proportional to the same abundance of the constituents wehre interference (interaction) between constituent substances is neglected. In this paper we present a model to account for a multiple reflection process wehreby the measured radiation is the result of multiple inelastic interactions (scattering or reflection) among the constituent components in the scene. While this process is inherently non-linear, and we have constructed an equivalent "extended" linear version of the model, which yields the effective abundance of the end members in the scene. This model seamlessly reduces to the conventional linear model when multiple scattering is absent. We present results of preliminary applications of these models with standard unmixing algorithm. The results show that the inclusion of higher order reflections always produces progressively a better description of the abundances and the interactions between the endmembers in the scene.
机译:Hyperspectral数据的混合模型描述了场景中的构成物质如何彼此影响的基础物理学,以产生在每个探测器像素处接收的光线。在线性模型中,总场景被描绘为反射表面的棋盘混合物,其中包含组成物质的分数丰度。在探测器像素处测量的辐射与忽略组成物质之间的组分干扰(相互作用)的相同大量建模成比例。在本文中,我们介绍了一个模型,用于考虑多个反射过程Wehreby,测量的辐射是场景中的组成部件中的多个非弹性相互作用(散射或反射)的结果。虽然此过程本质上是非线性的,但我们已经构建了模型的等效“扩展”线性版本,这产生了场景中的最终成员的有效丰富。当不存在多次散射时,该模型无缝地减少到传统的线性模型。我们用标准解密算法呈现这些模型的初步应用的结果。结果表明,包含更高阶的反射总是逐渐产生对场景中的终端中的丰富和相互作用的更好描述。

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