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Paramer Mismatch-Based Spectral Gamut Mapping

机译:基于参数不匹配的光谱色域映射

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A spectral agreement between the original scene and a printed reproduction is required to achieve an illuminant-invariant visual match. This is usually impossible since the spectral gamut of typical printing systems is only a small subset of all natural reflectances. Out-of gamut reflectances need to be mapped into the spectral gamut of the printer minimizing the perceived error between original and reproduction for more than one illuminant. In this paper, we propose an algorithmic framework for spectral gamut mapping to achieve a reproduction that is as visually correct as a colorimetric reproduction for one illuminant and is superior for a set of other illuminants. A sequence of hierarchical mappings in 3-D color spaces are performed utilizing the observer's color quantization to increase the spectral variability of subsequent transformations: For the most important illuminant a traditional colorimetric gamut mapping is performed. For any additional illuminants colors are mapped onto pixel-dependent paramer mismatch gamuts preserving the visual equivalence of previous transformations. We present a separation method for investigating the spectral gamut mapping framework and show that hue shifts and chroma gains cannot be always avoided for the second and subsequent illuminants and that the order of illuminants has a large impact on the final reproduction.
机译:需要原始场景和印刷复制品之间的光谱一致性,以实现光源不变的视觉匹配。这通常是不可能的,因为典型打印系统的光谱范围只是所有自然反射率的一小部分。色域外的反射率需要映射到打印机的光谱域中,以最小化多个光源在原始和再现之间的感知误差。在本文中,我们提出了一种用于光谱色域映射的算法框架,以实现一种再现,该再现在视觉上与一个光源的比色再现一样正确,而在一组其他光源上则更胜一筹。利用观察者的颜色量化来执行3-D颜色空间中的一系列层次映射,以增加后续变换的光谱可变性:对于最重要的光源,将执行传统的色度色域映射。对于任何其他光源,颜色都映射到像素相关的参数互配失配色域,从而保留了先前变换的视觉等效性。我们提出了一种用于研究光谱色域映射框架的分离方法,并表明对于第二个及后续光源,色相偏移和色度增益无法始终避免,并且光源的顺序对最终的再现影响很大。

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