DocumentCode
3604802
Title
Behavioral Circuit Models of Stereoscopic 3-D Liquid Crystal Displays and Shutter Glasses
Author
Seung-Hyuck Lee ; Jong-Man Kim ; Seung-Woo Lee
Author_Institution
Dept. of Inf. Display, Adv. Display Res. Center, Kyung Hee Univ., Seoul, South Korea
Volume
62
Issue
10
fYear
2015
Firstpage
3302
Lastpage
3307
Abstract
In this paper, behavioral circuit models of a stereoscopic 3-D liquid crystal display (LCD) and shutter glasses (SGs) are proposed. Until now, no study has been conducted on a model that can demonstrate the optical behavior of a 3-D LCD panel, because it includes black frame insertion. In addition, a circuit model of SGs should be established to completely illustrate the behavior of a stereoscopic 3-D LCD system. These circuit models can accurately predict the optical responses of dynamic transitions in 3-D LCD systems and those of SGs. We can then develop a complete behavioral model of the stereoscopic 3-D LCD system by combining the behavioral models of both the 3-D LCD panel and SGs. SmartSPICE simulations are performed to verify our model, which is implemented by an analog hardware description language, Verilog-A. On the basis of these simulation and measurement results, we can conclude that the proposed behavioral circuit models can accurately describe the optical responses of combined displays such as stereoscopic 3-D LCDs.
Keywords
SPICE; hardware description languages; liquid crystal displays; optical glass; three-dimensional displays; 3D LCD panel; SmartSPICE simulation; Verilog-A; analog hardware description language; behavioral circuit model; black frame insertion; dynamic transition; optical response; shutter glass; stereoscopic 3D liquid crystal display; Capacitance; Integrated circuit modeling; Liquid crystal displays; Optical imaging; Simulation; Solid modeling; Stereo image processing; Behavioral model; liquid crystal display (LCD); shutter glasses (SGs); stereoscopic 3-D; stereoscopic 3-D.;
fLanguage
English
Journal_Title
Electron Devices, IEEE Transactions on
Publisher
ieee
ISSN
0018-9383
Type
jour
DOI
10.1109/TED.2015.2464237
Filename
7214272
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