[1]吴 琦.3D 液晶显示模组不均匀分区背光扫描及其 设计方法[J].大众科技,2013,15(11):1.
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3D 液晶显示模组不均匀分区背光扫描及其 设计方法
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《大众科技》[ISSN:1008-1151/CN:45-1235/N]

卷:
第15卷
期数:
2013年11期
页码:
1
栏目:
信息技术与通信
出版日期:
2013-11-30

文章信息/Info

Title:
Shutter glass type of 3D liquid crystal display module non-uniform partition scanning backlight and its design method based on
文章编号:
1008-1151(2013)11-0001-02
作者:
吴 琦
苏州工业职业技术学院
关键词:
3D液晶显示分区背光
Keywords:
3D LCD backlight partition
分类号:
TP317
文献标志码:
A
摘要:
随着液晶显示技术的快速发展,3D 液晶显示逐渐受到市场和消费者的追捧。在 3D 液晶电视中,有一类快门式 3D 显示技术。这种技术通过一定间隔的两台摄像机同时拍摄同一个物体的左右眼两幅画面,然后合成处理后,在显示屏上通过 分时显示的方式显示出来,然后搭配与分时频率相同的快门式眼镜,使人的左右眼分别观看到摄像机拍摄到的同一物体画面。 由于两幅画面存在视差的不同,人眼即可感受到了立体的影像,实现 3D效果显示。为了实现更好的 3D 显示效果,一般通过扫 描背光的方式来对背光系统进行控制。
Abstract:
Abstract:With the rapid development of liquid crystal display technology, 3D display gradually sought after the market and consumers. In the 3D LCD TV, there is a kind of shutter type 3D display technology. This technique also shot the same object's left and right eyes two pictures by two cameras at certain intervals, and synthetic treatment, on the display screen through time-sharing display out, then match the shutter glasses with the same time frequency, the same object images to the left and the right eyes respectively to watch camera captured. As the two pictures there is disparity is different, the human eye can feel the stereo image, realize 3D display effect. In order to achieve better 3D display effect, generally control the scanning backlight system through mode of backlight.

参考文献/References:

[1] 张书华.液晶显示器光源技术的发展现状[J].现代显示, 1995. [2] 刘永智,杨开愚,等.液晶显示技术[M].北京:金盾出版社, 2009. [3] Chihwei Chen etal.Fast switching fresnel 1iquidcrystal lens for autosteroscopic 2D/3D display,SID2010:428-430. [4] Gwo—Feng Tseng etal,The Fabrication of Microretarderfor In—cell StereoscopiCLCD using Reactire LiquidCrystal, SPIE—IS&T/V01.6490 64900W-2. [5] Hoonkangetal.A novel polarizer glasses type 3Ddisplays with a pattern retarder,SID 2010 Digest. [6] Robert Brottetal,Directional backlight 1ightguideconsiderations for full resolutionautosteroscopic 3Ddisplays,SID 2010:218-220.

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备注/Memo

备注/Memo:
吴琦(1981-),女,江苏苏州人,苏州工业职业技术学院硕士,研究方向为电子与通信
更新日期/Last Update: 1900-01-01