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Three-Dimensional Image Display System using Stereogram and Holographic Optical Memory Techniques

机译:使用立体图和全息光学存储器技术的三维图像显示系统

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In this paper, we implemented a three dimensional image display system using stereogram and holographic optical memory techniques which can store many images and reconstruct them automatically. In this system, to store and reconstruct stereo images, incident angle of reference beam must be controlled in real time, so we used BPH(binary phase hologram) and LCD(liquid crystal display) for controlling reference beam. And input images are represented on the LCD without polarizer/analyzer for maintaining uniform beam intensities regardless of the brightness of input images. The input images and BPHs are edited using application software with having the same recording scheduled time interval in storing. The reconstructed stereo images are acquired by capturing the output images with CCD camera at the behind of the analyzer which transforms phase information into brightness information of images. The reference beams are acquired by Fourier transform of BPH which designed with SA(simulated annealing)algorithm, and represented on the LCD with the 0.05 seconds time interval using application software for reconstructing the stereo images. In output plane, we used a LCD shutter that is synchronized to a monitor that displays alternate left and right eye images for depth perception. We demonstrated optical experiment which store and reconstruct four stereo images in BaTiO_3 repeatedly using holographic optical memory techniques.
机译:在本文中,我们使用立体图和全息光学存储器技术实现了三维图像显示系统,其可以存储许多图像并自动重建它们。在该系统中,为了存储和重建立体图像,必须实时控制参考光束的入射角,因此我们使用BPH(二进制相全息图)和LCD(液晶显示器)来控制参考光束。并且输入图像在LCD上表示,无偏振器/分析器,无论输入图像的亮度如何,都可以保持均匀的光束强度。使用应用软件在存储中具有相同的录制计划时间间隔来编辑输入图像和BPH。通过在分析器的后面捕获具有CCD摄像机的输出图像来获取重建的立体图像,该分析器将相位信息转换为图像的亮度信息。通过BPH的傅立叶变换获取参考光束,该BPH设计为具有SA(模拟退火)算法,并且在LCD上表示,使用应用软件来重建立体图像的0.05秒的时间间隔。在“输出平面”中,我们使用了一个LCD快门,该LCD快门与显示器显示备用左眼图像以进行深度感知的监视器。我们展示了光学实验,其使用全息光学存储器技术重复地存储和重建BATIO_3中的四个立体图像。

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