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首页> 外文期刊>Journal of Imaging Science and Technology >Spatio-Spectral Gamut Mapping and Separation
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Spatio-Spectral Gamut Mapping and Separation

机译:时空光谱色域映射和分离

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摘要

Spectral printing aims to achieve an illuminant-invariant match between the original and the reproduction. Due to limited printer spectral gamuts, an errorless spectral reproduction is mostly impossible, and spectral gamut mapping is required to reduce perceptual errors. The recently proposed paramer-mismatch-based spectral gamut mapping (PMSGM) strategy minimizes such errors. However, due to its pixel-wise processing, it may result in severely different tonal values for spectrally similar adjacent pixels, causing unwanted edges (banding) in the final printout. While the addition of some noise to the a* and b* channels of the color/metric (e.g., CIELAB) image rendered for the first illuminant prior to gamut mapping solves the banding problem, it adversely increases the image graininess. In this article, the authors combine the PMSGM strategy with subsequent spectral separation, considering the spatial neighborhood within the tonal-value space and the illuminant-dependent perceptual spaces to directly compute tonal values. Their results show significant improvements to the PMSGM method in terms of avoiding banding artifacts. (C) 2015 Society for Imaging Science and Technology.
机译:光谱印刷的目的是在原稿和复制品之间实现光源不变的匹配。由于打印机的光谱色域有限,因此几乎不可能进行无错误的光谱重现,并且需要进行光谱色域映射以减少感知错误。最近提出的基于参数不匹配的光谱色域映射(PMSGM)策略将此类错误降至最低。但是,由于其逐像素处理,可能会导致光谱相似的相邻像素出现严重不同的色调值,从而导致最终打印输出中出现不必要的边缘(条带)。虽然在色域映射之前为第一个光源渲染的颜色/度量(例如CIELAB)图像的a *和b *通道中添加了一些噪声可以解决条带问题,但会不利地增加图像的颗粒感。在本文中,作者将PMSGM策略与随后的光谱分离相结合,考虑了色调值空间和依赖光源的感知空间内的空间邻域来直接计算色调值。他们的结果表明,在避免带状伪像方面,PMSGM方法得到了显着改进。 (C)2015年影像科学与技术学会。

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