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Multichannel holographic recording method for three-dimensional displays

机译:用于三维显示器的多通道全息记录方法

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摘要

A multichannel holographic recording method is presented for three-dimensional (3D) displays, utilizing pixel-based recording instead of image-based recording in order to realize parallel processing. The proposed approach is composed of two main stages. In the first stage, each two-dimensional (2D) image acquired from multiple viewpoints is partitioned by holographic recording channels (HRC) into nonoverlapping subimages. In the second stage, the corresponding pixels of the subimages are rearranged to constitute an encoding image. The encoding images are recorded simultaneously by each HRC, respectively, so the recording speed is improved significantly. The experimental results have demonstrated that the three-channel system is feasible and the full-parallax hologram reconstructed with white light is acceptable in quality. The three-channel system saves approximately 60percent of the recording time in comparison with the single-channel system. More importantly, the proposed method can accomplish a large-scale final hologram composed of multichannel holograms without sacrificing the hologram quality. Several 3D imaging applications such as medical diagnosis and advertisements could benefit from this research.
机译:提出了一种用于三维(3D)显示器的多通道全息记录方法,该方法利用基于像素的记录而不是基于图像的记录来实现并行处理。所提出的方法包括两个主要阶段。在第一阶段中,从多个视点获取的每个二维(2D)图像都由全息记录通道(HRC)划分为不重叠的子图像。在第二阶段,子图像的相应像素被重新布置以构成编码图像。每个HRC分别同时记录编码图像,因此记录速度得到了显着提高。实验结果表明,三通道系统是可行的,用白光重建全视差全息图的质量是可以接受的。与单通道系统相比,三通道系统节省了大约60%的录制时间。更重要的是,所提出的方法可以在不牺牲全息图质量的情况下完成由多通道全息图组成的大规模最终全息图。某些3D成像应用(例如医学诊断和广告)可以从这项研究中受益。

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