液晶与显示2024,Vol.39Issue(5) :656-671.DOI:10.37188/CJLCD.2024-0080

视网膜投影AR近眼显示研究进展

Research progress on retinal projection AR near-eye displays

朱嘉昕 罗丹
液晶与显示2024,Vol.39Issue(5) :656-671.DOI:10.37188/CJLCD.2024-0080

视网膜投影AR近眼显示研究进展

Research progress on retinal projection AR near-eye displays

朱嘉昕 1罗丹1
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作者信息

  • 1. 南方科技大学电子与电气工程系,广东深圳 518055
  • 折叠

摘要

增强现实(Augmented Reality,AR)近眼显示技术可将虚拟与现实世界的信息叠加在一起,为用户眼前营造出虚实结合的场景,成为连接现实和虚拟世界的桥梁.视网膜投影(Retinal Projection Displays,RPD)显示,又称为麦克斯韦近眼显示(Maxwellian Displays),可有效化解调焦-辐辏冲突,提供无眩晕的近眼显示观感,在AR近眼显示领域受到广泛关注.近年来,研究人员围绕扩展出瞳(Eyebox)、全彩显示等重要问题提出了不同的解决方案.本文主要介绍麦克斯韦增强AR近眼显示的工作原理,综述其核心器件及发展进程,并展望未来的发展前景与趋势.

Abstract

Augmented reality(AR)near-eye display technology combines the virtual information and real worlds,creating a scene of virtual and real integration for users,becoming a bridge connecting reality and the virtual world.Retinal projection display(RPD),also known as Maxwellian displays,has received widespread attention in the field of AR near-eye display due to its ability to effectively resolve vergence-accommodation conflict and provide a near-eye display without dizziness.With the progress of research,Maxwellian near-eye display has multiple implementation methods,and different display methods have proposed different solutions around the main problems of expanding eye movement range and full-color display.This article mainly introduces the working principle of Maxwellian near-eye displays,summarizes the core devices used for Maxwellian near-eye displays and their development progress,and looks forward to the future development prospects and trends of Maxwellian near-eye displays.

关键词

增强现实/视网膜投影近眼显示/全息光学器件/液晶偏振器件

Key words

augmented reality/retinal projection displays/holographic optical elements/liquid crystal polarization element

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基金项目

国家自然科学基金(62175098)

国家自然科学基金(U22A20163)

国家重点研发计划(2022YFA1203702)

广东省基础与应用基础研究基金(2021B1515020097)

出版年

2024
液晶与显示
中科院长春光学精密机械与物理研究所 中国光学光电子行业协会液晶分会 中国物理学会液晶分会

液晶与显示

CSTPCD北大核心
影响因子:0.964
ISSN:1007-2780
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