2012•SID Symposium Digest of Technical PapersRequires access

58.3: Pixel Design for Improved 3D TV with One‐Dimensional Integral‐Imaging Method

Rieko Fukushima, Shinichi Uehara, Hideyuki Takahashi, Hiroshi Azuma, Yuzo Hirayama

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Abstract

Abstract The one‐dimensional (horizontal parallax only) integral imaging (1D‐II) method realizes a natural and easy‐to‐view 3D display. The 1D‐II method is a display system that has a lenticular sheet in front of a high‐resolution LCD. The use of vertical lenticular sheet is known to provide an excellent spatial frequency of 3D images. For the development of autostereoscopic 3D display with a vertical lenticular sheet, we designed new LCD pixels that can suppress moiré artifacts without reducing opening ratio of pixels. By virtue of this design, we successfully put an easy‐to‐view 3D TV into practical use.

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What this paper is about

Abstract The one‐dimensional (horizontal parallax only) integral imaging (1D‐II) method realizes a natural and easy‐to‐view 3D display. The 1D‐II method is a display system that has a lenticular sheet in front of a high‐resolution LCD. The use of vertical lenticular sheet is known to provide an excellent spatial frequency of 3D images. For the development of autostereoscopic 3D display with a vertical lenticular sheet, we designed new LCD pixels that can suppress moiré artifacts without reducing opening ratio of pixels. By virtue of this design, we successfully put an easy‐to‐view 3D TV into practical use.

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Available abstract

Abstract The one‐dimensional (horizontal parallax only) integral imaging (1D‐II) method realizes a natural and easy‐to‐view 3D display. The 1D‐II method is a display system that has a lenticular sheet in front of a high‐resolution LCD. The use of vertical lenticular sheet is known to provide an excellent spatial frequency of 3D images. For the development of autostereoscopic 3D display with a vertical lenticular sheet, we designed new LCD pixels that can suppress moiré artifacts without reducing opening ratio of pixels. By virtue of this design, we successfully put an easy‐to‐view 3D TV into practical use.

Key concepts: Autostereoscopy, Integral imaging, Stereo display, Pixel, Liquid-crystal display, Parallax, Computer science, Computer graphics (images)

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