A perceptual eyebox for near-eye displays

被引:23
|
作者
Cholewiak, Steven A. [1 ,2 ]
Basgoze, Zeynep [1 ,2 ]
Cakmakci, Ozan [3 ]
Hoffman, David M. [3 ]
Cooper, Emily A. [1 ,2 ]
机构
[1] Univ Calif Berkeley, Sch Optometry, Berkeley, CA 94720 USA
[2] Univ Calif Berkeley, Vis Sci Program, Berkeley, CA 94720 USA
[3] Google LLC, 1600 Amphitheatre Pkwy, Mountain View, CA 94043 USA
关键词
CONTRAST;
D O I
10.1364/OE.408404
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
In near-eye display systems that support three-dimensional (3D) augmented and virtual reality, a central factor in determining the user experience is the size of the eyebox. The eyebox refers to a volume where the eye receives an acceptable view of the image with respect to a set of criteria and thresholds. The size and location of this volume are primarily driven by optical architecture choices in which designers trade-off a number of constraints, such as field of view, image quality, and product design. It is thus important to clearly quantify how design decisions affect the properties of the eyebox. Recent work has started evaluating the eyebox in 3D based purely on optical criteria. However, such analyses do not incorporate perceptual criteria that determine visual quality, which are particularly important for binocular 3D systems. To address this limitation, we introduce the framework of a perceptual eyebox. The perceptual eyebox is the volume where the eye(s) must be located for the user to experience a visual percept falling within a perceptually-defined criterion. We combine optical and perceptual data to characterize an example perceptual eyebox for display visibility in augmented reality. The key contributions in this paper include: comparing the perceptual eyebox for monocular and binocular display designs, modeling the effects of user eye separation, and examining the effects of eye rotation on the eyebox volume. (C) 2020 Optical Society of America under the terms of the OSA Open Access Publishing Agreement
引用
收藏
页码:38008 / 38028
页数:21
相关论文
共 50 条
  • [21] Review of Holographic Near-Eye Displays for Visual Comfort
    Chang Chenliang
    Dai Bo
    Xia Jun
    Zhang Dawei
    Zhuang Songlin
    LASER & OPTOELECTRONICS PROGRESS, 2022, 59 (20)
  • [22] Beaming Displays: Towards Displayless Augmented Reality Near-eye Displays
    Aksit, Kaan
    Itoh, Yuta
    Kaminokado, Takumi
    AI AND OPTICAL DATA SCIENCES III, 2022, 12019
  • [23] Geometric lightguide for near-eye light field displays
    Chen, Shan-Ling
    Fu, Li-Wei
    Huang, Jiun-Woei
    Shih, Kuang-Tsu
    Chen, Homer H.
    APPLIED OPTICS, 2024, 63 (06) : 1457 - 1470
  • [24] Liquid crystal polarization hologram for near-eye displays
    Xiong, Jianghao
    Wu, Shin-Tson
    LIQUID CRYSTALS TODAY, 2024, 33 (02) : 28 - 38
  • [25] HoloBeam: Paper-Thin Near-Eye Displays
    Aksit, Kaan
    Itoh, Yuta
    2023 IEEE CONFERENCE VIRTUAL REALITY AND 3D USER INTERFACES, VR, 2023, : 581 - 591
  • [26] Artifact reduction in lenslet array near-eye displays
    Bi Ye
    Yuichiro Fujimoto
    Taishi Sawabe
    Masayuki Kanbara
    Hirokazu Kato
    The Visual Computer, 2024, 40 (2) : 601 - 618
  • [27] Accommodation-invariant Computational Near-eye Displays
    Konrad, Robert
    Padmanaban, Nitish
    Molner, Keenan
    Cooper, Emily A.
    Wetzstein, Gordon
    ACM TRANSACTIONS ON GRAPHICS, 2017, 36 (04):
  • [28] Resolution enhancement of near-eye displays by overlapping images
    Cheng, Qijia
    Song, Weitao
    Lin, Feng
    Liu, Yue
    Wang, Yongtian
    Zheng, Yuanjin
    OPTICS COMMUNICATIONS, 2020, 458
  • [29] Lensless full-color holographic Maxwellian near-eye display with a horizontal eyebox expansion
    Wang, Zi
    Zhang, Xu
    Tu, Kefeng
    Lv, Guoqiang
    Feng, Qibin
    Wang, Anting
    Ming, Hai
    OPTICS LETTERS, 2021, 46 (17) : 4112 - 4115
  • [30] Retinal Projection Near-Eye Displays with Huygens' Metasurfaces
    Song, Weitao
    Liang, Xinan
    Li, Shiqiang
    Moitra, Parikshit
    Xu, Xuewu
    Lassalle, Emmanuel
    Zheng, Yuanjin
    Wang, Yongtian
    Paniagua-Dominguez, Ramon
    Kuznetsov, Arseniy, I
    ADVANCED OPTICAL MATERIALS, 2023, 11 (05)