Spherical full-parallax light-field display using ball of fly-eye mirror

H. Yano, T. Yendo
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引用次数: 2

Abstract

We present an optical system design for a 3D display that is spherical, full-parallax, and occlusion-capable with a wide viewing zone and no head tracking. The proposed system provides a new approach for the 3D display and thereby addresses limitations of the conventional light-field display structure. Specifically, a spherical full-parallax light-field display is difficult to achieve because it is challenging to curve the conventional structure of the light-field displays. The key elements of the system are a specially designed ball mirror and a high-speed projector. The ball mirror uniaxially rotates and reflects rays from the projector to various angles. The intensities of these rays are controlled by the projector. Rays from a virtual object inside the ball mirror are reconstructed, and the system acts as a light-field display based on the time-division multiplexing method. We implemented this ball mirror by 3D printing and metal plating. The prototype successfully displays a 3D image and the system feasibility is confirmed. Our system is thus suitable for displaying 3D images to many viewers simultaneously and it can be effectively employed as in art or advertisement installation.
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球眼镜球形全视差光场显示
我们提出了一种用于3D显示器的光学系统设计,该系统具有球形,全视差和闭塞能力,具有宽观看区和无头部跟踪。该系统为三维显示提供了一种新的方法,从而解决了传统光场显示结构的局限性。具体来说,球形全视差光场显示器是难以实现的,因为它是具有挑战性的弯曲的传统结构的光场显示器。该系统的关键部件是一个特殊设计的球镜和一个高速投影仪。球镜单轴旋转,将来自投影仪的光线反射到不同的角度。这些射线的强度由放映机控制。对球镜内虚拟物体的光线进行重构,利用时分复用技术实现光场显示。我们通过3D打印和金属电镀实现了这个球镜。样机成功显示出三维图像,验证了系统的可行性。因此,我们的系统适合同时向许多观众显示3D图像,并且可以有效地用于艺术或广告装置。
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