Title :
Horizontal Resolution Enhancement of Autostereoscopy Three-Dimensional Displayed Image by Chroma Subpixel Downsampling
Author :
Marson, Avishai M. ; Stern, Adrian
Author_Institution :
Electro-Opt. Eng. Dept., Ben-Gurion Univ. of the Negev, Beer Sheba, Israel
Abstract :
Autostereoscopic displays based on lenticular arrays have reduced resolution in the horizontal direction with respect to the vertical due to the distribution of the horizontal pixels between the different views. One known method is to use a slanted lenticular array in order to increase horizontal resolution at the expense of the vertical. In this paper, we propose a different approach to circumvent the displayed resolution limitation by taking advantage of the lower acuity of the eye to chroma than luma. This is done by downsampling the interlaced multiview display image at the color subpixel level. The chromatic information is in effect subsampled in the horizontal dimension (assuming a vertically arranged subpixel structure of the display), while enhancement of luma resolution is achieved. By appropriate slanting of the lenticular so as to minimize Moiré effects, the chroma is on average sampled evenly over the different views; therefore, chromatic distortion is also minimized. The vertical sampling rate is not decreased in this method; therefore, the total perceived light field resolution is enhanced. We demonstrate an example with an increase in number of views by 40% for a given lenticular and display setup.
Keywords :
image enhancement; image resolution; image sampling; stereo image processing; three-dimensional displays; visual perception; Moiré effect minimization; autostereoscopy three-dimensional image display; chroma subpixel downsampling; chromatic distortion minimization; color subpixel level; horizontal direction resolution enhancement; horizontal pixel distribution; interlaced multiview display imaging; luma resolution enhancement; slanted lenticular array; total perceived light field resolution; vertical sampling rate; Image color analysis; Image resolution; Imaging; Indexes; Multiplexing; Rendering (computer graphics); Three-dimensional displays; 3D displays; Autostereoscopic; Moiré; down-sampling; lenticular; stereoscopic;
Journal_Title :
Display Technology, Journal of
DOI :
10.1109/JDT.2014.2382712