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Matching illumination of solid objects

机译:固体物体的匹配照明

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The appearance of objects is determined by their surface reflectance and roughness and by the light field. Conversely, human observers might derive properties of the light field from the appearance of objects. The inverse problem has no unique solution, so perceptual interactions between reflectance, roughness, and light field are to be expected. In two separate experiments, we tested whether observers are able to match the illumination of spheres under collimated illumination only (matching of illumination direction) and under more or less diffuse illumination (matching of illumination direction and directedness of the beam). We found that observers are quite able to match collimated illumination directions of two rendered Lambertian spheres. Matching of the collimated beam directions of a Lambertian sphere and that of a real object with arbitrary reflectance and roughness properties resulted in similar results for the azimuthal angle, but in higher variance for the polar angle. Translucent objects and a tennis ball were found to be systematic outliers. If the directedness of the beam was also varied, the direction settings showed larger variance for more diffuse illumination. The directedness settings showed an overall quite large variance and, interestingly, interacted with the polar angle settings. We discuss possible photometrical mechanisms behind these effects.
机译:物体的外观取决于其表面反射率和粗糙度以及光场。相反,人类观察者可能从物体的外观中得出光场的属性。反问题没有唯一的解决方案,因此反射率,粗糙度和光场之间的感知相互作用是可以预期的。在两个单独的实验中,我们测试了观察者是否能够仅在准直照明(照明方向匹配)和或多或少的漫射照明(照明方向与光束方向匹配)下匹配球体的照明。我们发现观察者完全能够匹配两个渲染朗伯球体的平行照明方向。朗伯球体的准直光束方向与具有任意反射率和粗糙度特性的真实物体的准直光束方向的匹配导致方位角的结果相似,但极角的方差更大。发现半透明物体和网球是系统异常值。如果光束的方向性也发生变化,则方向设置将显示较大的方差,以实现更多的漫射照明。方向性设置显示总体上非常大的变化,并且有趣的是,它与极角设置相互影响。我们讨论了这些效应背后的可能的光度学机制。

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