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New three-dimensional visualization system based on angular image differentiation

机译:基于角度图像微分的新型三维可视化系统

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Abstract: This paper presents a new auto-stereoscopic system capable of reproducing static or moving 3D images by projection with horizontal parallax or with horizontal and vertical parallaxes. The working principle is based on the angular differentiation of the images which are projected onto the back side of the new patented screen. The most important features of this new system are: (1) Images can be seen by naked eye, without the use of glasses or any other aid. (2) The 3D view angle is not restricted by the angle of the optics making up the screen. (3) Fine tuning is not necessary, independently of the parallax and of the size of the 3D view angle. (4) Coherent light is not necessary neither in capturing the image nor in its reproduction, but standard cameras and projectors. (5) Since the images are projected, the size and depth of the reproduced scene is unrestricted. (6) Manufacturing cost is not excessive, due to the use of optics of large focal length, to the lack of fine tuning and to the use of the same screen several reproduction systems. (7) This technology can be used for any projection system: slides, movies, TV cannons,... A first prototype of static images has been developed and tested with a 3D view angle of 90$DGR and a photographic resolution over a planar screen of 900 mm, of diagonal length. Present developments have success on a dramatic size reduction of the projecting system and of its cost. Simultaneous tasks have been carried out on the development of a prototype of 3D moving images.!19
机译:摘要:本文提出了一种新的自动立体视觉系统,该系统能够通过水平视差或水平和垂直视差投影来再现静态或运动3D图像。工作原理基于投影到新专利屏幕背面的图像的角度差异。该新系统的最重要特征是:(1)无需使用眼镜或任何其他辅助工具就可以用肉眼看到图像。 (2)3D视角不受构成屏幕的光学元件的角度限制。 (3)不需要视差和3D视角大小的微调。 (4)相干光既不是捕获图像也不是复制图像所必需的,而是标准的照相机和投影仪。 (5)由于投影了图像,所以再现场景的大小和深度不受限制。 (6)由于使用大焦距的光学器件,由于没有微调,并且由于使用同一屏幕的几个再现系统,所以制造成本不会过高。 (7)该技术可用于任何投影系统:幻灯片,电影,电视大炮,...静态图像的第一个原型已经开发并通过3D视角90 $ DGR和在平面上的摄影分辨率进行了测试。屏幕的对角线长度为900毫米。当前的发展已经成功地实现了投影系统尺寸及其成本的大幅降低。在开发3D运动图像原型时已经执行了同时的任务!! 19

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