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真实场景中的视觉光场。

The visual light field in real scenes.

作者信息

Xia Ling, Pont Sylvia C, Heynderickx Ingrid

机构信息

π-lab (Perceptual Intelligence lab), Department of Industrial Design, Delft University of Technology, Delft, The Netherlands; e-mail:

Department of Human Technology Interaction, Eindhoven University of Technology, Eindhoven, The Netherlands; e-mail:

出版信息

Iperception. 2014 Nov 28;5(7):613-29. doi: 10.1068/i0654. eCollection 2014.

Abstract

Human observers' ability to infer the light field in empty space is known as the "visual light field." While most relevant studies were performed using images on computer screens, we investigate the visual light field in a real scene by using a novel experimental setup. A "probe" and a scene were mixed optically using a semitransparent mirror. Twenty participants were asked to judge whether the probe fitted the scene with regard to the illumination intensity, direction, and diffuseness. Both smooth and rough probes were used to test whether observers use the additional cues for the illumination direction and diffuseness provided by the 3D texture over the rough probe. The results confirmed that observers are sensitive to the intensity, direction, and diffuseness of the illumination also in real scenes. For some lighting combinations on scene and probe, the awareness of a mismatch between the probe and scene was found to depend on which lighting condition was on the scene and which on the probe, which we called the "swap effect." For these cases, the observers judged the fit to be better if the average luminance of the visible parts of the probe was closer to the average luminance of the visible parts of the scene objects. The use of a rough instead of smooth probe was found to significantly improve observers' abilities to detect mismatches in lighting diffuseness and directions.

摘要

人类观察者推断空空间中光场的能力被称为“视觉光场”。虽然大多数相关研究是在计算机屏幕上使用图像进行的,但我们通过使用一种新颖的实验装置来研究真实场景中的视觉光场。一个“探头”和一个场景通过一个半透明镜子进行光学混合。20名参与者被要求判断探头在照明强度、方向和漫射方面是否与场景匹配。使用了光滑探头和粗糙探头来测试观察者是否利用粗糙探头上3D纹理提供的关于照明方向和漫射的额外线索。结果证实,观察者在真实场景中对照明的强度、方向和漫射也很敏感。对于场景和探头的某些照明组合,发现探头与场景之间不匹配的感知取决于场景和探头上分别处于哪种照明条件,我们将其称为“交换效应”。对于这些情况,如果探头可见部分的平均亮度更接近场景物体可见部分的平均亮度,观察者会判断匹配度更好。结果发现,使用粗糙探头而非光滑探头能显著提高观察者检测照明漫射和方向不匹配的能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/39ae/4411985/40e9b2fcca90/i-perception-5-613-g0001.jpg

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