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A Theory of Recursive Orthogonal Subspace Projection for Hyperspectral Imaging

机译:高光谱成像的递归正交子空间投影理论

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Orthogonal subspace projection (OSP) has found many applications in hyperspectral data exploitation. Its effectiveness and usefulness result from implementation of two stage processes, i.e., annihilation of undesired signal sources by an OSP via inverting a matrix in the first stage followed by a matched filter to extract the desired signal source in the second stage. This paper presents a theory of recursive OSP (ROSP) for hyperspectral imaging, which performs OSP recursively without inverting undesired signature matrices. This ROSP opens up many new dimensions in extending OSP. First of all, ROSP allows OSP to implement varying signatures via a recursive equation without reinverting undesired signature matrices. Second, ROSP can be further used to derive an unsupervised ROSP (UROSP) OSP, which allows OSP to find a growing number of unknown signal sources recursively while simultaneously determining a desired number of signal sources. As a result, the commonly used automatic target generation process (ATGP) can be extended to a recursive ATGP, which can be considered as a special case of UROSP. Third, for practical applications, UROSP can be also extended in two differ ent fashions to causal process and progressive process, which give rise to causal UROSP and progressive UROSP, respectively, both of which can be easily realized in hardware implementation. Finally, UROSP provides a feasible stopping rule via a recently developed UROSP-specified virtual dimensionality.
机译:正交子空间投影(OSP)在高光谱数据开发中发现了许多应用。它的有效性和有用性来自于两阶段过程的实施,即OSP消除了不希望的信号源,方法是在第一阶段对矩阵求逆,然后在第二阶段通过匹配滤波器提取所需的信号源。本文提出了一种用于高光谱成像的递归OSP(ROSP)理论,该理论以递归方式执行OSP,而不会反转不需要的签名矩阵。该ROSP为扩展OSP开辟了许多新的维度。首先,ROSP允许OSP通过递归方程式实现变化的签名,而无需重新反转不需要的签名矩阵。其次,ROSP可以进一步用于导出无监督的ROSP(UROSP)OSP,这允许OSP递归地找到越来越多的未知信号源,同时确定所需数量的信号源。结果,可以将常用的自动目标生成过程(ATGP)扩展为递归ATGP,这可以视为UROSP的特例。第三,对于实际应用,UROSP还可以以两种不同的方式扩展到因果过程和渐进过程,这分别导致了因果UROSP和渐进UROSP,这两者都可以在硬件实现中轻松实现。最后,UROSP通过最近开发的UROSP指定的虚拟维数提供了可行的停止规则。

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