首页> 外文会议>ISamp;T's NIP19; International Conference on Digital Printing Technologies; Sep 28-Oct 3, 2003; New Orleans, Louisiana >RGB to Multi-Spectral Image Conversion By Spectral Palette and Color Print Simulation Under Different Illuminants
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RGB to Multi-Spectral Image Conversion By Spectral Palette and Color Print Simulation Under Different Illuminants

机译:在不同光源下通过光谱调色板进行的RGB到多光谱图像转换和彩色打印模拟

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摘要

A simple idea of RGB to spectral image conversion is proposed. A spectral reflectance with the closest colorimetric value to that of RGB pixel is picked up from the spectral color palette and embedded in each pixel of RGB image. SVD (Singular Value Decomposition) is applied to compress the high-resolution spectral image. Spectral image data are rearranged to 36 pixels x 36 spectra sub-block so that we could make use of strong correlations in both spatial and spectral. The spectral image could be very well reproduced from a small number of singular values by SVD. Although a transformed image has not the real world spectra but palette-based pseudo-spectra, the proposed method could be applied to simulate the color appearances for a given set of ink and paper media under the different illuminants, and to estimate how much the huge spectral image data could be compressed. The paper discusses the color reproducibility by SVD compression and introduces the estimated color appearances for inkjet prints under the different fluorescent lamps.
机译:提出了将RGB转换为光谱图像的简单方法。从光谱调色板中获得比色度值最接近RGB像素的光谱反射率,并将其嵌入RGB图像的每个像素中。 SVD(奇异值分解)用于压缩高分辨率光谱图像。光谱图像数据重新排列为36个像素x 36个光谱子块,因此我们可以在空间和光谱方面利用强相关性。可以通过SVD从少量奇异值很好地复制光谱图像。尽管变换后的图像不具有真实世界的光谱,但具有基于调色板的伪光谱,但该方法可用于模拟给定的油墨和纸张介质在不同光源下的颜色外观,并估计多少光谱图像数据可以被压缩。本文讨论了通过SVD压缩实现的颜色再现性,并介绍了在不同荧光灯下喷墨打印的估计颜色外观。

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