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Visual processing transformability of primaries and visual efficiency of display devices

机译:原色的视觉处理可转换性和显示设备的视觉效率

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Abstract: This paper follows on paper 1250-06 in SPIE Proceedings of the 1990 Conference: 'Perceiving, measuring, and using color', Michael H. Brill, Chair/Editor, February 15-16, 1990. Visual efficiency of display devices, as well as of all other applications of strong visible coloration, demands an understanding of true spectral response of normal human vision, and for a useful colorimetry of visual processing. True spectral response of vision is considered unknown, while visual processing, in the sense represented by colorimetry, is thought to be adequately understood. It is the intent of this paper and its antecedent to suggest that both are mistaken: first, that spectral response is now fairly dependably known, and second that colorimetry works too poorly to support the contention that visual processing is understood well enough for that purpose. Fortunately, it appears that much of this understanding can be gained through psychophysics, without a good knowledge of the inner working of the visual system. We repeat here some evidence of true spectral response, and introduce new evidence on some ways in which visual processing does not occur. Colorimetry (measurement of color and brightness) does not correlate well to what the normal human observer sees. In researching the reasons for the discrepancies, we use (1) accurate, absolute spectral power distributions to arrive at power-content of viewed lights, (2) in a visual colorimeter coupled by a quartz light-pipe to a precise spectroradiometer; (3) three disparate primary-sets of three spectral lights; (4) six normal acute observers. Last year, we demonstrated large errors in computed chromaticity; this year we show that the errors are not largely due to the Standard Observer, but to the 'color-matching function' (CMF), and to its uses. Last year we suggested trouble with transformation of primaries; this year we show graphic evidence that transformation of primaries fails. The repercussions of these facts - failure of CMFs as weighting functions, and of transformation of primaries - are unpleasant to contemplate. Avenues of possible improvement of the colorimetry situation are mentioned.!
机译:摘要:本文是根据1990年会议的SPIE会议论文集1250-06:“感知,测量和使用颜色”,Michael H. Brill,主席/编辑,1990年2月15日至16日。显示设备的视觉效率,以及所有其他强烈可见着色的应用,都需要了解正常人视觉的真实光谱响应,以及对视觉处理有用的比色法。视觉的真实光谱响应被认为是未知的,而以色度法表示的视觉处理被认为已被充分理解。本文及其意图的目的是建议两者都被误解:首先,现在已经相当可靠地知道了光谱响应,其次,比色法的工作效果太差,无法支持这样的论点:对于此目的,视觉处理已经足够了解。幸运的是,似乎在没有对视觉系统内部工作有充分了解的情况下,可以通过心理物理学获得许多这种理解。我们在此重复一些真实光谱响应的证据,并介绍一些不会发生视觉处理的新证据。比色法(颜色和亮度的测量)与正常的人类观察者所看到的没有很好的相关性。在研究产生差异的原因时,我们使用(1)准确的绝对光谱功率分布来得出所观察到的光的功率含量;(2)在通过石英光管与精密光谱仪耦合的可见色度计中; (3)三个光谱光的三个不同的主要集合; (4)六名正常的急性观察员。去年,我们证明了计算色度存在较大误差;今年,我们证明了这些错误在很大程度上不是由标准观察者引起的,而是由“色彩匹配功能”(CMF)及其用途引起的。去年我们建议麻烦改造小学;今年,我们展示了图形化的证据表明原初转化失败了。这些事实的后果-作为权重函数的CMF的失败以及原语的转换-是令人不愉快的。提到了比色情况可能改善的途径。

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