DocumentCode
72990
Title
A Frontal Multi-Projection Autostereoscopic 3D Display Based on a 3D-Image-Guided Screen
Author
Shang-Fei Zang ; Qiong-Hua Wang ; Wu-Xiang Zhao ; Jie Zhang ; Jing-Long Liang
Author_Institution
Sch. of Electron. & Inf. Eng., Sichuan Univ., Chengdu, China
Volume
10
Issue
10
fYear
2014
fDate
Oct. 2014
Firstpage
882
Lastpage
886
Abstract
A frontal multi-projection (FMP) autostereoscopic display using a 3D-image-guided screen is proposed for improving space efficiency. Based on the optical multiplexing and de-multiplexing, the important optical functions of 3D-image-guided screen are parallax image interlacing and view-separating, which is capable of reconstructing 3D images without quality degradation from the front direction. The operating principle, optical design calculation equations and correction method of parallax images are described in detail. A 50-inch FMP autostereoscopic prototype based on the 3D-guided-image screen with pixels (1024×768×8) is developed, which enhances the brightness and 3D perceptions. The performance of this prototype is evaluated by measuring the luminance and crosstalk distribution along the horizontal direction at the optimum viewing distance. This research has potential applications in some commercial entertainments and movies for the realistic 3D perceptions.
Keywords
brightness; demultiplexing; image reconstruction; multiplexing; optical crosstalk; screens (display); three-dimensional displays; visual perception; 3D image reconstruction; 3D perceptions; 3D-image-guided screen; FMP autostereoscopic prototype; brightness; correction method; crosstalk distribution; frontal multiprojection autostereoscopic 3D display; luminance; operating principle; optical de-multiplexing; optical design calculation equations; optical multiplexing; parallax image interlacing; size 50 inch; space efficiency; view-separating; Adaptive optics; Educational institutions; Lenses; Optical imaging; Prototypes; Three-dimensional displays; 3D-image-guided screen; Autostereoscopic 3D display; frontal multi-projection; parallax image interlacing; view-separating;
fLanguage
English
Journal_Title
Display Technology, Journal of
Publisher
ieee
ISSN
1551-319X
Type
jour
DOI
10.1109/JDT.2014.2331366
Filename
6845342
Link To Document