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Full-Parallax Holographic Light-Field 3-D Displays and Interactive 3-D Touch

机译:全视差全息光场3-D显示屏和交互式3-D触摸

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A light-field 3-D display (LFD) reproduces light rays or wavefront as if there are real objects, and a perfect 3-D display that satisfies all the depth cues in human vision becomes possible. By reproducing both horizontal and vertical parallaxes, i.e., full-parallax, an LFD reconstructs a real or virtual image in 3-D space. A rich 3-D experience can be provided to viewers, and moreover, multiple viewers can share the same reproduced 3-D image. A technology called holographic stereogram (HS) is the integration of ray-based and wavefront-based methods, and has been applied to LFD. Hardcopy HS has already been commercialized. The technology of HS is helpful also for an interactive LFD; a full-parallax LFD using a projector and a holographic screen that modulates the directions of light rays is based on the principle of HS. In this case, accurate registration between the projected image and the holographic screen is necessary, and it is achieved by projecting some test patterns and capturing them with a calibration camera. As a full-parallax LFD can reproduce real images in midair between the screen and viewers, it is possible to realize interactive 3-D touch interface. If a user touches the 3-D real image floating in the air, the reproduced light is scattered by the user's fingertip. The scattered light is detected by a color image sensor placed behind the holographic screen, and can be employed to detect the user's touch. In this system, the reproduced 3-D images and the 3-D touch detection are associated with each other, and thus, we do not have to worry about the complicated registration between them. The identification of the user's interaction is simple, because the color information of the 3-D image can be used for this purpose. Some experimental results of the 3-D touch-sensing display are introduced, and possible applications of this technology are discussed as well.
机译:光场3D显示器(LFD)可以像真实物体一样再现光线或波阵面,并且可以满足人类视觉中所有深度提示的完美3D显示器。通过再现水平和垂直视差,即全视差,LFD重建3-D空间中的真实或虚像。可以向观看者提供丰富的3D体验,并且,多个观看者可以共享相同的再现的3D图像。称为全息立体图(HS)的技术是基于射线和基于波前的方法的集成,并且已应用于LFD。硬拷贝HS已商业化。 HS的技术对于交互式LFD也很有帮助。使用投影仪和全息屏幕调制光线方向的全视差LFD基于HS原理。在这种情况下,需要在投影图像和全息屏幕之间进行精确配准,这是通过投影一些测试图案并用校准相机捕获它们来实现的。由于全视差LFD可以在屏幕和观看者之间的空中再现真实图像,因此可以实现交互式3-D触摸界面。如果用户触摸漂浮在空中的3D真实图像,则再现的光会被用户的指尖散射。散射光由放置在全息屏幕后面的彩色图像传感器检测,并可以用来检测用户的触摸。在该系统中,再现的3-D图像和3-D触摸检测相互关联,因此,我们不必担心它们之间的复杂配准。用户交互的识别很简单,因为可以将3D图像的颜色信息用于此目的。介绍了3-D触摸显示器的一些实验结果,并讨论了该技术的可能应用。

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