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Vision physiology applied to hyperspectral short wave infrared imaging

机译:视力生理学应用于高光谱短波红外成像

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The hyperspectral space consisting of narrow spectral bands is neither an optimal nor an orthogonal feature space when identifying objects. In this paper we consider a means of reducing hyperspectral feature space to a multispectral feature space that is orthogonal and optimal for separation of the objects from background. The motivation for this work is derived from the fact that the retina of the human eye uses only four broad and overlapping spectral response functions and yet it is optimal for detecting objects of multifarious colors in the visible region. In this paper we explore using spectral response functions for the Short Wave Infrared (SWIR) region that are not sharp, but broad and overlapping and even more complex than those found in the retina for the visible region. Treating the measured intensities of the narrow spectral bands as feature vectors of the object of interest, we calculate a new vector space which effectively is a weighted average of the old space, but is optimal for separating the object from the background.
机译:由窄光谱带的高光谱空间既不是最佳也不识别对象时的正交特征空间。在本文中,我们考虑减少高光谱特征空间到正交和最佳用于从背景对象的分离多光谱特征空间的手段。这项工作的动机是从人眼的视网膜上仅使用四个广泛的和重叠的光谱响应函数,但它是为在可见区域检测的繁杂颜色的对象最佳的事实的。在本文中,我们探索利用光谱响应函数对于不是尖锐的短波红外(SWIR)区域,但宽和重叠的甚至比那些在视网膜的可见光区域发现了更多的复杂。处理该窄光谱带为感兴趣的对象的特征向量的测量的强度,我们计算一个新的向量空间,其是有效的旧空间的加权平均,但是是用于从背景中分离出目的最佳的。

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