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Liquid Crystal Microlenses for Autostereoscopic Displays

机译:用于自动立体显示器的液晶微透镜

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摘要

Three-dimensional vision has acquired great importance in the audiovisual industry in the past ten years. Despite this, the first generation of autostereoscopic displays failed to generate enough consumer excitement. Some reasons are little 3D content and performance issues. For this reason, an exponential increase in three-dimensional vision research has occurred in the last few years. In this review, a study of the historical impact of the most important technologies has been performed. This study is carried out in terms of research manuscripts per year. The results reveal that research on spatial multiplexing technique is increasing considerably and today is the most studied. For this reason, the state of the art of this technique is presented. The use of microlenses seems to be the most successful method to obtain autostereoscopic vision. When they are fabricated with liquid crystal materials, extended capabilities are produced. Among the numerous techniques for manufacturing liquid crystal microlenses, this review covers the most viable designs for its use in autostereoscopic displays. For this reason, some of the most important topologies and their relation with autostereoscopic displays are presented. Finally, the challenges in some recent applications, such as portable devices, and the future of three-dimensional displays based on liquid crystal microlenses are outlined.
机译:在过去的十年中,三维视觉已在视听行业中变得越来越重要。尽管如此,第一代自动立体显示器仍未能引起足够的消费者兴奋。一些原因是3D内容和性能问题很少。因此,在最近几年中,三维视觉研究呈指数级增长。在这篇评论中,对最重要技术的历史影响进行了研究。这项研究是根据每年的研究手稿进行的。结果表明,对空间复用技术的研究正在大量增加,而今天是研究最多的。因此,提出了该技术的最新技术。使用微透镜似乎是获得自动立体视觉最成功的方法。当用液晶材料制造它们时,将产生扩展的功能。在众多用于制造液晶微透镜的技术中,这篇综述涵盖了其在自动立体显示器中最可行的设计。因此,提出了一些最重要的拓扑及其与自动立体显示器的关系。最后,概述了一些近期应用(例如便携式设备)中的挑战以及基于液晶微透镜的三维显示器的未来。

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