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Multifocal planes head-mounted displays

机译:多焦平面头戴式显示器

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Stereoscopic head-mounted displays (HMD's) provide an effective capability to create dynamic virtual environments. For a user of such environments, virtual objects would be displayed ideally at the appropriate distances, and natural concordant accommodation and convergence would be provided. Under such image display conditions, the user perceives these objects as if they were objects in a real environment. Current HMD technology requires convergent eye movements. However, it is currently limited by fixed visual accommodation, which is inconsistent with real-world vision. A prototype multiplanar volumetric projection display based on a stack of laminated planes was built for medical visualization as discussed in a paper presented at a 1999 Advanced Research Projects Agency workshop (Sullivan, Advanced Research Projects Agency, Arlington, Va., 1999). We show how such technology can be engineered to create a set of virtual planes appropriately configured in visual space to suppress conflicts of convergence and accommodation in HMD's. Although some scanning mechanism could be employed to create a set of desirable planes from a two-dimensional conventional display, multiplanar technology accomplishes such function with no moving parts. Based on optical principles and human vision, we present a comprehensive investigation of the engineering specification of multiplanar technology for integration in HMD's. Using selected human visual acuity and stereoacuity criteria, we show that the display requires at most 27 equally spaced planes, which is within the capability of current research and development display devices, located within a maximal 26-mm-wide stack. We further show that the necessary in-plane resolution is of the order of 5 μm.
机译:立体头戴式显示器(HMD)提供了创建动态虚拟环境的有效功能。对于这种环境的用户,理想情况下将以适当的距离显示虚拟对象,并提供自然一致的容纳和融合。在这样的图像显示条件下,用户将这些对象感知为真实环境中的对象。当前的HMD技术需要收敛的眼球运动。但是,目前它受到固定视觉调节的限制,这与现实世界的视觉不一致。如在1999年高级研究计划局研讨会上发表的论文(萨利文,高级研究计划局,弗吉尼亚州阿灵顿,1999年)中所讨论的那样,构建了基于叠层平面的多平面体投影样机原型,用于医学可视化。我们展示了如何设计此类技术以创建一组在视觉空间中适当配置的虚拟平面,以抑制HMD的收敛和适应冲突。尽管可以采用某种扫描机制从二维常规显示器中创建一组理想的平面,但是多平面技术无需任何移动部件即可实现这种功能。基于光学原理和人类视觉,我们对用于HMD集成的多平面技术的工程规范进行了全面研究。使用选定的人类视觉敏锐度和立体敏锐度标准,我们显示出该显示器最多需要27个等距的平面,这在最大宽度为26毫米的堆栈中的当前研发显示设备的能力之内。我们进一步表明,必要的面内分辨率约为5μm。

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