Progress in 3D Display Technologies for Immersive Visual Experiences

Jeong-Wan Jo;Yoonwoo Kim;Sung-Min Jung;Jong Min Kim
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Abstract

The increasing demand for immersive visual experiences has significantly driven the expansion of augmented and virtual reality. The optical technologies that support the three-dimensional displays are pivotal in advancing immersive display systems. This article reviews the fundamental concepts and current progress in the development of various 3D display technologies, with a focus on immersive 3D display systems. We discuss the basic concept of depth perception through monocular and binocular cues in the human visual system. Various stereoscopic display systems that utilise eyewear glasses are introduced. The fundamental operation principles and design rules of multi-view autostereoscopic display systems are investigated, with a highlight on active optical filter technology for converting between 2D and 3D display modes. Additionally, light field display technologies, which offer more natural depth perception, are explored. State-of-the-art technologies, recent research trends, and applications to immersive AR and VR systems across stereoscopic, autostereoscopic, and light field displays are examined. Combinatorial innovations in optical materials, optical device architecture, cost-effective process technologies, and precise system design will accelerate the commercialization of immersive displays including AR and VR applications, offering an excellent user experience and leading the future of the immersive display industry.
三维显示技术在沉浸式视觉体验方面的进展
对身临其境视觉体验的需求日益增长,极大地推动了增强现实和虚拟现实技术的发展。支持三维显示的光学技术在推动身临其境显示系统的发展中举足轻重。本文回顾了各种三维显示技术的基本概念和当前的开发进展,重点是沉浸式三维显示系统。我们讨论了人类视觉系统中通过单眼和双眼线索进行深度感知的基本概念。介绍了利用眼镜的各种立体显示系统。研究了多视角自动立体显示系统的基本工作原理和设计规则,重点介绍了在二维和三维显示模式之间进行转换的有源滤光片技术。此外,还探讨了能提供更自然深度感知的光场显示技术。此外,还探讨了能提供更自然深度感知的光场显示技术。本文还研究了立体、自动立体和光场显示方面的最新技术、最新研究趋势以及在沉浸式 AR 和 VR 系统中的应用。光学材料、光学器件结构、高性价比工艺技术和精确系统设计方面的组合创新将加速身临其境显示技术(包括 AR 和 VR 应用)的商业化,提供卓越的用户体验,引领身临其境显示行业的未来。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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