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A Novel two-stage process for estimation the number of endmembers in hyperspectral imagery

机译:估计高光谱图像中终点的数量的新型两阶段过程

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Estimating the number of endmembers and their corresponding spectral signatures in the hyperspectral imagery is crucial for successful application of the spectral un-mixing process. This paper proposes a novel two-stage process for estimating the number of endmembers. In the first stage of this process, a subset of convex pixels is located using principal components analysis (PCA) and a sequence of projective 3D convex hull. In the second stage, an endmember is identified from the subset of convex pixels by applying orthogonal subspace projection (OSP) and the subset of convex pixels is clustered using a spectral angle mapper (SAM), iteratively. The proposed method was carried out with both synthetic and real images for estimating the number of endmembers. The results demonstrated that the proposed method can be used to estimate a more reasonable and precise number of endmembers than the eigenvalue-based methods and that it can also be used to simultaneously extract an endmember and the anomaly spectra.
机译:估计终点图像的终点和它们的相应光谱签名对于成功应用光谱不混合过程至关重要。本文提出了一种用于估算终点数量的新型两阶段过程。在该过程的第一阶段中,使用主组件分析(PCA)和一系列投影3D凸壳的凸形像素的子集。在第二阶段,通过施加正交子空间投影(OSP),从凸像素子集识别终端,并且迭代地使用频谱角映射器(SAM)聚类凸像素的子集。所提出的方法是用合成和实际图像进行的,用于估计终端用数的数量。结果表明,该方法可用于估计比基于特征值的方法更合理和精确的终端数,并且它也可用于同时提取端部和异常光谱。

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