Cerda-Company Xim, Parraga C Alejandro, Otazu Xavier
J Opt Soc Am A Opt Image Sci Vis. 2018 Apr 1;35(4):626-638. doi: 10.1364/JOSAA.35.000626.
Tone-mapping operators (TMOs) are designed to generate perceptually similar low-dynamic-range images from high-dynamic-range ones. We studied the performance of 15 TMOs in two psychophysical experiments where observers compared the digitally generated tone-mapped images to their corresponding physical scenes. All experiments were performed in a controlled environment, and the setups were designed to emphasize different image properties: in the first experiment we evaluated the local relationships among intensity levels, and in the second one we evaluated global visual appearance among physical scenes and tone-mapped images, which were presented side by side. We ranked the TMOs according to how well they reproduced the results obtained in the physical scene. Our results show that ranking position clearly depends on the adopted evaluation criteria, which implies that, in general, these tone-mapping algorithms consider either local or global image attributes but rarely both. Regarding the question of which TMO is the best, KimKautz ["Consistent tone reproduction," in Proceedings of Computer Graphics and Imaging (2008)] and Krawczyk ["Lightness perception in tone reproduction for high dynamic range images," in Proceedings of Eurographics (2005), p. 3] obtained the better results across the different experiments. We conclude that more thorough and standardized evaluation criteria are needed to study all the characteristics of TMOs, as there is ample room for improvement in future developments.
色调映射运算符(TMO)旨在从高动态范围图像生成感知上相似的低动态范围图像。我们在两项心理物理学实验中研究了15种TMO的性能,在这些实验中,观察者将数字生成的色调映射图像与其相应的物理场景进行比较。所有实验均在受控环境中进行,并且设置旨在强调不同的图像属性:在第一个实验中,我们评估了强度级别之间的局部关系,在第二个实验中,我们评估了并排呈现的物理场景和色调映射图像之间的全局视觉外观。我们根据TMO对物理场景中获得的结果的再现程度对它们进行排名。我们的结果表明,排名位置明显取决于所采用的评估标准,这意味着,一般来说,这些色调映射算法要么考虑局部图像属性,要么考虑全局图像属性,但很少同时考虑两者。关于哪种TMO是最佳的问题,KimKautz [《一致的色调再现》,发表于《计算机图形学与成像会议论文集》(2008年)] 和Krawczyk [《高动态范围图像色调再现中的亮度感知》,发表于《欧洲图形学会议论文集》(2005年),第3页] 在不同实验中取得了更好的结果。我们得出结论,需要更全面和标准化的评估标准来研究TMO的所有特性,因为在未来的发展中有很大的改进空间。