Title :
A Novel Partitioned Light Guide Backlight LCD for Mobile Devices and Local Dimming Method With Nonuniform Backlight Compensation
Author :
Yang Li ; Pei Chu ; Jia Liu ; Sidan Du
Author_Institution :
Sch. of Electron. Sci. & Eng., Nanjing Univ., Nanjing, China
Abstract :
Conventional backlight dimming methods can hardly be used in edge type backlight LCD. In order to perform a power efficient backlight local dimming in LCD of mobile devices, a novel backlight module structure called partitioned light guide (PLG) was proposed. The PLG backlight module consists of independently controlled light sources, allowing the light luminance distribution to be controlled locally and efficiently. A PLG LCD prototype with white LEDs was built for evaluation. It was proved that local backlight dimming can be performed effectively in the edge type LCD. In addition, to compensate the backlight nonniformity which was caused by light leakage at the boundaries of PLG, an image distortion driven local dimming algorithm was proposed. Image distortion level of displayed image was selected by the user to determine how much compromise was made between power saving ratio and image quality. More simulations with RGB LED light sources showed the method can significantly improve the power efficiency of edge type backlight LCD, compared with global dimming method and SSC method.
Keywords :
LED displays; colour displays; compensation; distortion; light sources; liquid crystal displays; mobile handsets; PLG LCD prototype; PLG boundary; RGB LED light source; edge type backlight LCD; image display; image distortion level; image quality; independent controlled light source; light leakage; light luminance distribution control; local backlight dimming; local dimming method; mobile device; nonuniform backlight compensation; partitioned light guide backlight LCD module; power saving ratio; Algorithm design and analysis; Image edge detection; Light emitting diodes; Light sources; Mobile handsets; Power demand; Prototypes; Liquid crystal display (LCD); local dimming method; mobile device;
Journal_Title :
Display Technology, Journal of
DOI :
10.1109/JDT.2013.2296593