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NMF Hyperspectral Unmixing Of The Sea Bottom: Influence Of The Adjacency Effects, Model and Method

机译:海底的NMF高光谱解密:邻接效应,模型和方法的影响

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Sea bottom unmixing is a challenging task for the analysis of coastal zones. Actually the upward photons are attenuated and diffused by the water column layer, giving low signal to noise hyperspectral data. A classical approach is to perform inversion of the water column using semi-analytical parametric models and estimation process, and obtain the water column constituents (chlorophyll, suspended matter, dissolved organic matter and bathymetry), and the coefficients of pure materials reflectance spectra (endmembers), given in spectral libraries, for each pixel. We consider here the case of unknown endmembers, and we suppose that the water column components have been obtained by a classical inversion method or in-situ measurements. For each observed pixel the upward luminance is analysed and decomposed into three terms, respectively issued after interaction with the target bottom pixel, its neighbours, and the water column. We show that in some conditions the adjacent pixels effect is not negligible, due to the diffusion in the water column, and we develop in accordance a new mixing model for the sea bottom. We propose a non-negative matrix factorisation based unmixing method to solve the problem, and present results for hyperspectral data simulations.
机译:海底解密是对沿海地区分析的具有挑战性的任务。实际上,向上光子被水柱层衰减并扩散,给出低信号到噪声超细数据。经典方法是使用半分析参数模型和估计过程进行水柱的反转,并获得水柱成分(叶绿素,悬浮物,溶解的有机物和碱基法),以及纯材料反射光谱的系数(终点在频谱库中给出,用于每个像素。我们考虑这里的内容未知的终端,并且我们假设已经通过经典反演方法或原位测量获得了水柱组分。对于每个观察到的像素,分析向上亮度并分解为三个术语,分别在与目标底部像素,其邻居和水柱相互作用之后发出。我们表明,在某些条件下,由于水柱中的扩散,相邻像素效应不会忽略不计,并且我们以新的海底混合模型开发。我们提出了一种基于非负矩阵分子,基于解密方法来解决问题,并对高光谱数据模拟的结果为本。

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