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Front and Rear Projection Autostereoscopic 3D Displays Based on Lenticular Sheets

机译:基于透镜板的前后投影自动立体3D显示器

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A front projection autostereoscopic display is proposed. The display is composed of eight projectors and a 3D-image-guided screen which having a lenticular sheet and a retro-reflective diffusion screen. Based on the optical multiplexing and de-multiplexing, the optical functions of the 3D-image-guided screen are parallax image interlacing and view-separating, which is capable of reconstructing 3D images without quality degradation from the front direction. The operating principle, optical design calculation equations and correction method of parallax images are given. A prototype of the front projection autostereoscopic display is developed, which enhances the brightness and 3D perceptions, and improves space efficiency. The performance of this prototype is evaluated by measuring the luminance and crosstalk distribution along the horizontal direction at the optimum viewing distance. We also propose a rear projection autostereoscopic display. The display consists of eight projectors, a projection screen, and two lenticular sheets. The operation principle and calculation equations are described in detail and the parallax images are corrected by means of homography. A prototype of the rear projection autostereoscopic display is developed. The normalized luminance distributions of viewing zones from the measurement are given. Results agree well with the designed values. The prototype presents high resolution and high brightness 3D images. The research has potential applications in some commercial entertainments and movies for the realistic 3D perceptions.
机译:提出了一种前投影自动立体显示器。显示器由八个投影仪和具有双凸透镜片和复古反射漫射屏的3D图像引导屏幕组成。基于光学复用和解复用,3D图像引导屏幕的光学功能是视差图像交织和视图分离,其能够重建3D图像而不从前方方向劣化。给出了操作原理,光学设计计算方程和视差图像的校正方法。开发了前投影自动立体显示器的原型,从而提高了亮度和3D感知,并提高了空间效率。通过在最佳观察距离处测量沿水平方向的亮度和串扰分布来评估该原型的性能。我们还提出了一种后投影自动立体显示器。显示器由八个投影仪,投影屏幕和两个透镜床单组成。详细描述了操作原理和计算方程,并且通过承包方式校正视差图像。开发了后投影自动立体显示器的原型。给出了从测量中观察区域的标准化亮度分布。结果与所设计的值完全一致。原型提出了高分辨率和高亮度3D图像。该研究在一些商业娱乐和电影中具有潜在的应用,以实现现实的3D感知。

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