Akşit Kaan, Baghsiahi Hadi, Surman Phil, Ölçer Selim, Willman Eero, Selviah David R, Day Sally, Urey Hakan
Koç University, Department of Electrical Engineering Istanbul, 34450, Turkey.
Opt Express. 2013 Jun 17;21(12):14331-41. doi: 10.1364/OE.21.014331.
This paper describes the first demonstrations of two dynamic exit pupil (DEP) tracker techniques for autostereoscopic displays. The first DEP tracker forms an exit pupil pair for a single viewer in a defined space with low intraocular crosstalk using a pair of moving shutter glasses located within the optical system. A display prototype using the first DEP tracker is constructed from a pair of laser projectors, pupil-forming optics, moving shutter glasses at an intermediate pupil plane, an image relay lens, and a Gabor superlens based viewing screen. The left and right eye images are presented time-sequentially to a single viewer and seen as a 3D image without wearing glasses and allows the viewer to move within a region of 40 cm × 20 cm in the lateral plane, and 30 cm along the axial axis. The second DEP optics can move the exit pupil location dynamically in a much larger 3D space by using a custom spatial light modulator (SLM) forming an array of shutters. Simultaneous control of multiple exit pupils in both lateral and axial axes is demonstrated for the first time and provides a viewing volume with an axial extent of 0.6-3 m from the screen and within a lateral viewing angle of ± 20° for multiple viewers. This system has acceptable crosstalk (< 5%) between the stereo image pairs. In this novel version of the display the optical system is used as an advanced dynamic backlight for a liquid crystal display (LCD). This has advantages in terms of overall display size as there is no requirement for an intermediate image, and in image quality. This system has acceptable crosstalk (< 5%) between the stereo image pairs.
本文介绍了用于自动立体显示器的两种动态出瞳(DEP)跟踪器技术的首次演示。第一种DEP跟踪器使用位于光学系统内的一对移动快门眼镜,在定义的空间中为单个观看者形成出瞳对,且眼内串扰较低。使用第一种DEP跟踪器的显示器原型由一对激光投影仪、瞳孔形成光学器件、位于中间瞳孔平面的移动快门眼镜、图像中继透镜和基于加博尔超透镜的显示屏构成。左眼和右眼图像按时间顺序呈现给单个观看者,无需佩戴眼镜即可视为3D图像,并允许观看者在横向平面内40厘米×20厘米的区域内移动,沿轴向移动30厘米。第二种DEP光学器件可通过使用形成快门阵列的定制空间光调制器(SLM)在大得多的3D空间中动态移动出瞳位置。首次演示了在横向和轴向上对多个出瞳的同时控制,并为多个观看者提供了一个观看空间,其轴向范围为距屏幕0.6 - 3米,横向视角为±20°。该系统在立体图像对之间具有可接受的串扰(<5%)。在这种新颖的显示器版本中,光学系统用作液晶显示器(LCD)的先进动态背光源。这在整体显示器尺寸方面具有优势,因为不需要中间图像,并且在图像质量方面也有优势。该系统在立体图像对之间具有可接受的串扰(<5%)。