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Effects of Configuration of Optical Combiner on Near-Field Depth Perception in Optical See-Through Head-Mounted Displays

机译:光学组合器的配置对光学透明头戴式显示器中近场深度感知的影响

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The ray-shift phenomenon means the apparent distance shift in the display image plane between virtual and physical objects. It is caused by the difference in the refraction of virtual display and see-through optical paths derived from optical combiners that are necessary to provide a see-through capability in optical see-through head-mounted displays. In this work, through a human-subject experiment, we investigated the effects of ray-shift phenomenon induced by the optical combiner on depth perception for near-field distances (40 cm-100 cm). In our experiment, we considered three different configurations of optical combiner: horizontal-tilt and vertical-tilt configurations (using plate beamsplitters horizontally and vertically tilted by 45°, respectively), and non-tilt configuration (using rectangular solid waveguides). Participants' depth perception errors in these configurations were compared with those in an ordinary condition (i.e., the condition where physical objects are directly shown without the displays) and theoretically estimated ones. According to the experimental results, the measured percentage depth perception errors were similar to the theoretically estimated ones, where the amount of estimated percentage depth errors was greater than 0.3%. Furthermore, the participants showed significantly larger depth perception errors in the horizontal-tilt configuration than in an ordinary condition, while no large errors were found in the vertical-tilt configuration. In the non-tilt configuration, the results were dependent on the thickness of optical combiner and target distance.
机译:光线偏移现象是指虚拟对象与物理对象之间在显示图像平面上的明显距离偏移。这是由于虚拟显示器和从光学组合器获得的透视光路的折射差异所引起的,而光学组合器对于在光学透视头戴式显示器中提供透视功能是必需的。在这项工作中,我们通过一个人为对象的实验,研究了光学组合器引起的光线移动现象对近场距离(40 cm-100 cm)深度感知的影响。在我们的实验中,我们考虑了三种不同的光学合成器配置:水平倾斜和垂直倾斜配置(分别使用水平和垂直倾斜45°的平板分束器)和非倾斜配置(使用矩形实心波导)。将参与者在这些配置中的深度感知误差与普通情况下(即在没有显示的情况下直接显示物理对象的情况)和理论上估计的情况进行了比较。根据实验结果,测得的深度感知百分比误差与理论估计的近似,其中深度误差百分比的估计值大于0.3%。此外,与普通情况相比,参与者在水平倾斜配置中表现出明显更大的深度感知误差,而在垂直倾斜配置中未发现较大的误差。在非倾斜配置中,结果取决于光学合成器的厚度和目标距离。

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