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低延迟眼部视差渲染及其对虚拟现实中深度感知影响的研究。

Low-Latency Ocular Parallax Rendering and Investigation of Its Effect on Depth Perception in Virtual Reality.

出版信息

IEEE Trans Vis Comput Graph. 2024 May;30(5):2228-2238. doi: 10.1109/TVCG.2024.3372078. Epub 2024 Apr 19.

Abstract

With a demand for an immersive experience in virtual/augmented reality (VR/AR) displays, recent efforts have incorporated eye states, such as focus and fixation, into display graphics. Among these, ocular parallax, a small parallax generated by eye rotation, has received considerable attention for its impact on depth perception. However, the substantial latency of head-mounted displays (HMDs) has made it challenging to accurately assess its true effect during free eye movements. To address this issue, we propose a high-speed (360 Hz) and low-latency (4.8 ms) ocular parallax rendering system with a custom-built eye tracker. Using this proposed system, we conducted an investigation to determine the latency requirements necessary for achieving perceptually stable ocular parallax rendering. Our findings indicate that, in binocular viewing, ocular parallax rendering is perceived as significantly less stable than conventional rendering when the latency exceeds 43.72 ms at 1.3 D and 21.50 ms at 2.0 D. We also evaluated the effects of ocular parallax rendering on binocular fusion and monocular depth perception under free viewing conditions. The results demonstrated that ocular parallax rendering can enhance binocular fusion but has a limited impact on depth perception under monocular viewing conditions when latency is minimized.

摘要

随着对虚拟现实/增强现实 (VR/AR) 显示器沉浸式体验的需求不断增加,最近的研究已经将眼睛状态(如注视和固视)纳入显示图形中。在这些方法中,眼球视差(眼球旋转产生的微小视差)因其对深度感知的影响而受到广泛关注。然而,头戴式显示器 (HMD) 的大量延迟使得在自由眼动期间准确评估其真实效果变得具有挑战性。为了解决这个问题,我们提出了一种具有定制眼动追踪器的高速(360 Hz)和低延迟(4.8 ms)眼球视差渲染系统。使用这个提出的系统,我们进行了一项研究,以确定实现可感知稳定的眼球视差渲染所需的延迟要求。我们的研究结果表明,在双目观察中,当延迟超过 1.3 D 时的 43.72 ms 和 2.0 D 时的 21.50 ms 时,眼球视差渲染在感知上的稳定性明显低于传统渲染。我们还评估了在自由观看条件下,眼球视差渲染对双眼融合和单眼深度感知的影响。结果表明,在最小化延迟的情况下,眼球视差渲染可以增强双眼融合,但对视差感知的影响有限。

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