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Simulation design of a wearable see-through retinal projector

机译:可穿戴式透明视网膜投影仪的仿真设计

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This study proposes a new simulation design for a wearable see-through retinal projector combined with a compact camera. The see-through retinal projector is composed of an illumination system and eyepiece system. In this eyeglass-mounted design, all the information is projected directly into the user's eyes using a see-through retinal projector. The retinal projector forms a 20 in. (50.8 cm) upright virtual image located 2 m in front of the human eye, and the illumination system provides uniform illumination for liquid crystal on silicon (LCoS) panels. Moreover, an RGB LED array is used as the light source to generate color images with color sequences. The compact camera has a lens with an aperture of F/2.8, a half field-of-view (FOV) of 30 degrees, and 2 million pixels. This optical system design with the combination of a see-through retinal projector and a compact camera has a volume of about 5.83 cm(3) and a weight of 6.02 g. (C) 2015 Optical Society of America
机译:这项研究为可穿戴式透明视网膜投影仪与紧凑型相机相结合提出了一种新的仿真设计。透明的视网膜投影仪由照明系统和目镜系统组成。在这种眼镜安装式设计中,所有信息都使用透明的视网膜投影仪直接投影到用户的眼睛中。视网膜投影仪在人眼前方2 m处形成20英寸(50.8厘米)的竖直虚拟图像,并且照明系统为硅(LCoS)面板上的液晶提供均匀的照明。此外,RGB LED阵列被用作光源以产生具有颜色序列的彩色图像。紧凑型相机的镜头具有F / 2.8的光圈,30度的半视场(FOV)和200万像素。这种光学系统设计结合了透明的视网膜投影仪和紧凑型相机,体积约为5.83 cm(3),重量为6.02 g。 (C)2015年美国眼镜学会

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