基于集成成像的桌面光场大视角三维显示

IF 15.3 1区 物理与天体物理 Q1 OPTICS Opto-Electronic Advances Pub Date : 2023-01-01 DOI:10.29026/oea.2023.220178
Yan Xing, Xi Lin, Lin-Bo Zhang, Yun-Peng Xia, Hanle Zhang, Hong-Yu Cui, Shuang Li, Tong-Yu Wang, Hui Ren, Di Wang, Huan Deng, Qiong Wang
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引用次数: 2

摘要

光场3D显示技术被认为是一项革命性的技术,它解决了现有3D显示中严重的视觉疲劳问题。桌面光场3D显示提供了一种全新的显示形式,满足多用户共享观看和协同工作,有望成为传统墙壁和便携式显示形式的潜在替代品。然而,由于空间信息量有限,目前大多数桌面光场3D显示器仍然无法实现大的径向视角和正确的径向视角和视差。为了解决视角和透视问题,提出并开发了一种新型的基于集成成像的桌面光场三维显示器,该显示器具有简单的平板结构,采用复合透镜阵列、两块拼接的8K液晶显示面板和一个光整形扩散屏。复合透镜阵列采用反设计方案,由多个三片式复合透镜单元组成,在空间信息量有限的情况下,极大地扩展了径向视角,平衡了其他重要的三维显示参数。该显示器的径向视角为68.7°,尺寸为43.5英寸,比传统的桌面光场3D显示器大。径向透视和视差正确,可以在大径向观看位置再现高分辨率3D图像。我们设想这个提议的显示打开了重新定义消费电子显示形式的可能性。
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Integral imaging-based tabletop light field 3D display with large viewing angle
Light field 3D display technology is considered a revolutionary technology to address the critical visual fatigue issues in the existing 3D displays. Tabletop light field 3D display provides a brand-new display form that satisfies multi-user shared viewing and collaborative works, and it is poised to become a potential alternative to the traditional wall and portable display forms. However, a large radial viewing angle and correct radial perspective and parallax are still out of reach for most current tabletop light field 3D displays due to the limited amount of spatial information. To address the viewing angle and perspective issues, a novel integral imaging-based tabletop light field 3D display with a simple flat-panel structure is proposed and developed by applying a compound lens array, two spliced 8K liquid crystal display panels, and a light shaping diffuser screen. The compound lens array is designed to be composed of multiple three-piece compound lens units by employing a reverse design scheme, which greatly extends the radial viewing angle in the case of a limited amount of spatial information and balances other important 3D display parameters. The proposed display has a radial viewing angle of 68.7° in a large display size of 43.5 inches, which is larger than the conventional tabletop light field 3D displays. The radial perspective and parallax are correct, and high-resolution 3D images can be reproduced in large radial viewing positions. We envision that this proposed display opens up possibility for redefining the display forms of consumer electronics.
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来源期刊
CiteScore
19.30
自引率
7.10%
发文量
128
期刊介绍: Opto-Electronic Advances (OEA) is a distinguished scientific journal that has made significant strides since its inception in March 2018. Here's a collated summary of its key features and accomplishments: Impact Factor and Ranking: OEA boasts an impressive Impact Factor of 14.1, which positions it within the Q1 quartiles of the Optics category. This high ranking indicates that the journal is among the top 25% of its field in terms of citation impact. Open Access and Peer Review: As an open access journal, OEA ensures that research findings are freely available to the global scientific community, promoting wider dissemination and collaboration. It upholds rigorous academic standards through a peer review process, ensuring the quality and integrity of the published research. Database Indexing: OEA's content is indexed in several prestigious databases, including the Science Citation Index (SCI), Engineering Index (EI), Scopus, Chemical Abstracts (CA), and the Index to Chinese Periodical Articles (ICI). This broad indexing facilitates easy access to the journal's articles by researchers worldwide. Scope and Purpose: OEA is committed to serving as a platform for the exchange of knowledge through the publication of high-quality empirical and theoretical research papers. It covers a wide range of topics within the broad area of optics, photonics, and optoelectronics, catering to researchers, academicians, professionals, practitioners, and students alike.
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