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The Verriest Lecture: Color vision in an uncertain world

机译:verceriest讲座:在不确定的世界中的颜色视觉

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摘要

The natural world is optically unconstrained. Surface properties may vary from one point to another, and reflected light may vary from one instant to the next. The aim of this work is to quantify some of the physical failures of color vision performance that result from uncertainty. In computational simulations with images of vegetated and nonvegetated outdoor scenes, it is shown that color provides an unreliable guide to surface identity. It is also shown that changes in illuminant may cause colors to no longer match and the relations between individual colors to vary. These failures are generally well described by a measure of the randomness of the colors in scenes, the Shannon entropy. Although uncertainty is intrinsic to the environment, its consequences for color vision can be predicted. Published by The Optical Society under the terms of the Creative Commons Attribution 4.0 License.
机译:自然界在光学上是不受约束的。表面特性可能因点而异,反射光可能因瞬间而异。这项工作的目的是量化由于不确定性导致的色觉表现的一些物理故障。在对植被和非植被户外场景的图像进行的计算模拟中,显示颜色为表面身份提供了不可靠的指导。研究还表明,光源的变化可能会导致颜色不再匹配,各个颜色之间的关系也会发生变化。这些失败通常可以用场景中颜色的随机性——香农熵来描述。虽然不确定性是环境固有的,但它对色觉的影响是可以预测的。由光学学会根据知识共享署名4.0许可证的条款出版。

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