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A fundamental study on the quantity of veiling light caused by a highly luminant light source

机译:高亮度光源引起的面纱光量的基础研究

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References(21) The results of the study on the threshold value of visual perception of Landolt’s Ring visual targets within the visual field in a visual environment having uniform background luminance has already been reported. In the present paper are described the results of an experiment concerning the effect of a highly luminant object such as a light source or window existing in the visual field on the threshold value of visual perception. In the experiment, an apparatus as shown in Fig. 1 and a target consisting of a sheet of unglossed printing paper with its one half printed in black were used, and the observers were told to adjust the position at which the boundary of the white and black parts of the target become imperceptible as the target was brought near to the light source. Considering that at that point the contrast of the target and the background luminance were changed to the threshould value of visual perception by the veiling light produced by the highly luminant light source, the quantity of the veiling light was calculated. The results of the calculation obtained are summarized as follows:(1) The veiling light radically decreases in the inverse proportion to the light source deflection angle from the position at which the glare light source does not enter directly into the fovea centralis of the eye.(2) The quantity of the veiling light occurring in the human visual system increases approximately in direct proportion to the increase of the luminance of the glare light source.(3) When the size of the glare light source is increased, the quantity of the equivalent veiling luminance increases approximately in the direct proportion to the increased size.(4) For the quantity of the equivalent veiling light when the size of a light source is large, the large glare light source should be divided by the solid angle of 1° visual angle and the quantities of the equivalent veiling light generated by the respective units of the divided light source should be summed up, and thus the background luminance and the contrast can be obtained.
机译:参考文献(21)已经报道了在具有均匀背景亮度的视觉环境中视野内的Landolt环视觉目标的视觉感知阈值的研究结果。在本文中,描述了有关高亮度物体(例如存在于视野中的光源或窗户)对视觉阈值的影响的实验结果。在实验中,使用如图1所示的设备和由一张未涂漆的打印纸组成的目标,该纸张的一半用黑色打印,然后告诉观察者调整白色和黑色的边界。当目标靠近光源时,目标的黑色部分变得无法察觉。考虑到此时,通过高发光光源产生的遮蔽光将目标的对比度和背景亮度改变为视觉的阈值,计算出遮蔽光的量。计算结果总结如下:(1)从眩光光源不直接进入眼睛的中央凹的位置开始,遮蔽光与光源偏转角成反比地急剧减小。 (2)人类视觉系统中出现的面纱光的数量与眩光光源的亮度的增加成正比增加。(3)当眩光光源的尺寸增加时,当量遮挡亮度与增加的尺寸成正比。(4)对于光源尺寸较大的当量遮挡光,应将大眩光光源除以1°的立体角应当将视角和由分割光源的各个单元生成的等效面光的数量相加,从而得出背景亮度和对比度。可以获得st。

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