Cheng Dewen, Chen Hailong, Yao Cheng, Hou Qichao, Hou Weihong, Wei Li, Yang Tong, Wang Yongtian
Opt Express. 2022 Sep 26;30(20):36931-36948. doi: 10.1364/OE.472175.
It has been a challenge to design an optical see-through head-mounted display that is compact, lightweight, and stray-light-suppressed by using freeform optics. A new type of design based on freeform prisms is presented. The system consists of three optical elements and a micro-display. Two prisms serve as near-eye viewing optics that magnify the image displayed by the micro-display, and the other freeform lens is an auxiliary element attached to the main wedge-shaped prism to provide an undistorted see-through view of a real-world scene. The overall thickness of the optical system does not exceed 9.5 mm, and the weight is less than 9.8 g per eye. The final system is based on a 0.49-inch micro-display and features a diagonal field of view of 38°, an F/number of 1.8, with a 10 mm × 7 mm exit pupil diameter, and a 19 mm eye relief. The causes of stray light in the optical-mechanical system are investigated, and effective solutions or theoretical suppression of stray light are given. The freeform optical elements are successfully fabricated, and the system performance is carefully investigated. The results show that the performance of the optical see-through head-mounted display is adequate for practical applications.
设计一款紧凑、轻便且采用自由曲面光学元件抑制杂散光的光学透视头戴式显示器一直是一项挑战。本文提出了一种基于自由曲面棱镜的新型设计。该系统由三个光学元件和一个微型显示器组成。两个棱镜用作近眼观察光学元件,用于放大微型显示器显示的图像,另一个自由曲面透镜是连接到主楔形棱镜的辅助元件,以提供真实场景的无畸变透视视图。光学系统的总厚度不超过9.5毫米,每只眼睛的重量小于9.8克。最终系统基于0.49英寸微型显示器,具有38°的对角视场、F数为1.8、出瞳直径为10毫米×7毫米以及19毫米的眼点距。研究了光机系统中杂散光的成因,并给出了有效解决杂散光或理论抑制杂散光的方法。成功制造了自由曲面光学元件,并对系统性能进行了仔细研究。结果表明,该光学透视头戴式显示器的性能足以满足实际应用。