单投影机多视点三维显示系统的设计

J. Geng
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引用次数: 1

摘要

多视图三维(3D)显示器能够向观看者提供水平视差,并向每个视图呈现高分辨率和全彩图像。大多数多视图3D显示系统都是使用多个投影仪设计和实现的,每个投影仪为一个视图生成图像。虽然这种多投影机设计策略在概念上很简单,但这种多投影机设计的实施通常会导致非常昂贵的系统和复杂的校准程序。即使对于具有中等数量投影机(例如,32或64个投影机)的多视图系统,由于集成多个投影机的成本和复杂性,多投影机3D显示系统的成本可能会变得令人望而却步。在本文中,我们描述了一种光学设计技术,用于一类仅使用单个投影仪的多视图3D显示系统。在这种单投影机多视图(SPM)系统设计中,3D显示的多个视图以时间复用的方式由单个高速投影机生成,该投影机具有特殊设计的光学元件,扫描镜和反射镜阵列。所有视图的图像依次生成,并通过特殊设计的光学系统从不同的观看方向投射到3D显示屏上。因此,单个投影机可以从多个观看方向生成等量的多视图图像,从而完成多台投影机的任务。所提出的SPM技术的一个明显优势是显著降低了成本、大小和复杂性,尤其是在视图数量较多的情况下。SPM策略还减轻了多投影机校准的耗时过程。该设计方法具有灵活性和可扩展性,可以适应具有不同数量视图的系统。
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Design of a single projector multiview 3D display system
Multiview three-dimensional (3D) display is able to provide horizontal parallax to viewers with high-resolution and fullcolor images being presented to each view. Most multiview 3D display systems are designed and implemented using multiple projectors, each generating images for one view. Although this multi-projector design strategy is conceptually straightforward, implementation of such multi-projector design often leads to a very expensive system and complicated calibration procedures. Even for a multiview system with a moderate number of projectors (e.g., 32 or 64 projectors), the cost of a multi-projector 3D display system may become prohibitive due to the cost and complexity of integrating multiple projectors. In this article, we describe an optical design technique for a class of multiview 3D display systems that use only a single projector. In this single projector multiview (SPM) system design, multiple views for the 3D display are generated in a time-multiplex fashion by the single high speed projector with specially designed optical components, a scanning mirror, and a reflective mirror array. Images of all views are generated sequentially and projected via the specially design optical system from different viewing directions towards a 3D display screen. Therefore, the single projector is able to generate equivalent number of multiview images from multiple viewing directions, thus fulfilling the tasks of multiple projectors. An obvious advantage of the proposed SPM technique is the significant reduction of cost, size, and complexity, especially when the number of views is high. The SPM strategy also alleviates the time-consuming procedures for multi-projector calibration. The design method is flexible and scalable and can accommodate systems with different number of views.
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