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Varifocal Occlusion for Optical See-Through Head-Mounted Displays using a Slide Occlusion Mask

机译:使用滑动遮挡光罩的光学透明头戴式显示器的各种遮挡

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We propose a varifocal occlusion technique for optical see-through head-mounted displays (OST-HMDs). Occlusion in OST-HMDs is a powerful visual cue that enables depth perception in augmented reality (AR). Without occlusion, virtual objects rendered by an OST-HMD appear semi-transparent and less realistic. A common occlusion technique is to use spatial light modulators (SLMs) to block incoming light rays at each pixel on the SLM selectively. However, most of the existing methods create an occlusion mask only at a single, fixed depth-typically at infinity. With recent advances in varifocal OST-HMDs, such traditional fixed-focus occlusion causes a mismatch in depth between the occlusion mask plane and the virtual object to be occluded, leading to an uncomfortable user experience with blurred occlusion masks. In this paper, we thus propose an OST-HMD system with varifocal occlusion capability: we physically slide a transmissive liquid crystal display (LCD) to optically shift the occlusion plane along the optical path so that the mask appears sharp and aligns to a virtual image at a given depth. Our solution has several benefits over existing varifocal occlusion methods: it is computationally less demanding and, more importantly, it is optically consistent, i.e., when a user loses focus on the corresponding virtual image, the mask again gets blurred consistently as the virtual image does. In the experiment, we build a proof-of-concept varifocal occlusion system implemented with a custom retinal projection display and demonstrate that the system can shift the occlusion plane to depths ranging from 25 cm to infinity.
机译:我们为光学透明头戴式显示器(OST-HMD)提出了一种变焦聚焦技术。 OST-HMD中的遮挡是一种强大的视觉提示,可以在增强现实(AR)中进行深度感知。如果没有遮挡,则由OST-HMD渲染的虚拟对象将显示为半透明且不太现实。一种常见的遮挡技术是使用空间光调制器(SLM)来选择性地阻挡SLM上每个像素处的入射光线。但是,大多数现有方法仅在单个固定深度(通常为无穷大)处创建遮罩。随着可变焦距OST-HMD的最新发展,这种传统的固定焦点遮挡会导致遮挡蒙版平面和要遮挡的虚拟对象之间的深度不匹配,从而导致使用模糊遮挡蒙版的用户体验不舒服。因此,在本文中,我们提出了一种具有可变焦遮挡功能的OST-HMD系统:我们以物理方式滑动透射型液晶显示器(LCD)以使遮挡平面沿光路光学移动,从而使遮罩显得清晰并对准虚像。在给定的深度。我们的解决方案与现有的变焦混合方法相比具有以下优点:计算要求较低,更重要的是,它在光学上是一致的,即,当用户对相应的虚拟图像失去关注时,蒙版会像虚拟图像一样再次变得模糊不清。 。在实验中,我们构建了带有自定义视网膜投影显示器的概念验证可变焦闭塞系统,并演示了该系统可以将闭塞平面移动到从25 cm到无限远的深度。

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