IP Library › Granted Patent US 9,666,145
Granted Patent B2
US 9,666,145 · App. 14/491,200 · Granted May 30, 2017

Method and apparatus for controlling brightness compensation for pixel units of display device

Inventors: Huijuan Chen (Beijing, CN); Hyungkyu Kim (Beijing, CN); Duo Zhang (Beijing, CN); Yang Chen (Beijing, CN)
Assignees: BOE TECHNOLOGY GROUP CO., LTD.; BEIJING BOE OPTOELECTRONICS TECHNOLOGY CO., LTD.
G09G3/3607H04N9/3182G09G2320/0233G09G2320/0693
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Quick Facts
Patent No.
US 9,666,145
App. No.
14/491,200
Granted
May 30, 2017
Kind
B2
Abstract

The present disclosure provides a method for controlling brightness compensation for pixel units of a display device, comprising: driving white subpixels in the pixel units to compensate the pixel units for the brightness according to predetermined pixel units whose brightness is to be compensated for in the display device and compensating grayscale voltages corresponding to the brightness of the pixel units to be compensated.

Claims (34)

1. An apparatus for controlling brightness compensation for pixel units of a display device, comprising:

a brightness compensating circuit configured to drive white subpixels in the pixel units to compensate the pixel units for the brightness according to predetermined pixel units whose brightness is to be compensated for in the display device and compensating grayscale voltages corresponding to the brightness of the pixel units to be compensated; and

a compensating grayscale voltage determining circuit configured to, before the brightness compensating circuit drives the white subpixels, determine the compensating grayscale voltages corresponding to the white subpixels in the pixel units whose brightness is to be compensated for, wherein

the compensating grayscale voltage determining circuit is configured to read an initial grayscale voltage corresponding to the white subpixels in the display device, and determine the compensating grayscale voltages corresponding to the white subpixels according to the initial grayscale voltage and predetermined compensation coefficients for the grayscale voltages corresponding to the white subpixels, wherein the predetermined compensation coefficient is a ratio based on a maximum grayscale value and the grayscale value corresponding to a brightness value of the pixel unit.

2. The apparatus according to claim 1 , wherein

the compensating grayscale voltages corresponding to the white subpixels are determined by using the equation V ij =η ij *V max , where V ij represents the compensating grayscale voltage corresponding to the white subpixel in the i th row and the j th column, V max represents the initial grayscale voltage, and η ij represents the compensating coefficient corresponding to the white subpixel in the i th row and the j th column, and i and j are positive integers.

3. The apparatus according to claim 1 , further comprising:

a compensation coefficient determining circuit configured to select a grayscale voltage corresponding to a maximum grayscale value, and drive subpixels in the display device with the grayscale voltage so as to display a white image, each of the subpixels at least including a white subpixel, a red subpixel, a green subpixel and a blue subpixel; measure, by a brightness measuring device, brightness values of the respective subpixels corresponding to the white image at a light-exiting side of the display device; and determine an evenly-divided region with the maximum brightness, the brightness value corresponding to the evenly-divided region being a maximum brightness value, from a plurality of evenly-divided regions; determine a brightness difference between a brightness value of each evenly-divided region and the maximum brightness value according to the maximum brightness value; and compare the grayscale voltage corresponding to the brightness difference of each evenly-divided region with the grayscale voltage corresponding to the maximum grayscale, resultant ratios being the compensation coefficients for the grayscale voltages corresponding to the white subpixels in the evenly-divided regions.

4. The apparatus according to claim 3 , wherein

the compensation coefficient determining circuit is specifically configured to select a grayscale voltage corresponding to a maximum grayscale value, and drive subpixels in the display device with the grayscale voltage so as to display a white image, each of the subpixels at least including a white subpixel, a red subpixel, a green subpixel and a blue subpixel; measure, by a brightness measuring device, brightness values of the respective subpixels corresponding to the white image at a light-exiting side of the display device; determine a pixel unit with the maximum brightness, the brightness value corresponding to the pixel unit being a maximum brightness value; determine a brightness difference between a brightness value of each pixel unit and the maximum brightness value; and compare the grayscale voltage corresponding to the brightness value of each pixel unit with the grayscale voltage corresponding to the maximum grayscale, resultant ratios being the compensation coefficients for the grayscale voltages corresponding to the white subpixels in the pixel unit.

5. The apparatus according to claim 1 , wherein

when the display device is powered on, an initial grayscale voltage corresponding to the white subpixels in the display device is read.

6. The apparatus according to claim 1 , wherein

the initial grayscale voltage is an initial grayscale voltage corresponding to a maximum grayscale.

7. A method for controlling brightness compensation for pixel units of a display device, comprising:

reading an initial grayscale voltage corresponding to the white subpixels in the display device;

determining compensating grayscale voltages corresponding to the white subpixels according to the initial grayscale voltage and predetermined compensation coefficients for the grayscale voltages corresponding to the white subpixels, wherein the predetermined compensation coefficient is a ratio based on a maximum grayscale value and the grayscale value corresponding to a brightness value of the pixel unit; and

driving white subpixels in the pixel units to compensate the pixel units for the brightness according to predetermined pixel units whose brightness is to be compensated for in the display device and the compensating grayscale voltages corresponding to the brightness of the pixel units to be compensated.

8. The method according to claim 7 , wherein

the compensating grayscale voltages corresponding to the white subpixels are determined by using the equation V ij =η ij *V max , where V ij represents the compensating grayscale voltage corresponding to the white subpixel in the i th row and the j th column, V max represents the initial grayscale voltage, and η ij represents the compensating coefficient corresponding to the white subpixel in the i th row and the j th column, and i and j are positive integers.

9. The method according to claim 7 , wherein

prior to reading the initial grayscale voltage corresponding to the white subpixels in the display device, the method further comprises a step of

determining the compensating coefficients for the grayscale voltages corresponding to the white subpixels,

wherein the step of determining the compensating coefficients for the grayscale voltages corresponding to the white subpixels comprises steps of:

selecting a grayscale voltage corresponding to a maximum grayscale value, and driving subpixels in the display device with the grayscale voltage so as to display a white image, each of the subpixels at least including a white subpixel, a red subpixel, a green subpixel and a blue subpixel;

measuring, by a brightness measuring device, brightness values of the respective subpixels corresponding to the white image at a light-exiting side of the display device; and

determining an evenly-divided region with the maximum brightness, the brightness value corresponding to the evenly-divided region being a maximum brightness value, from a plurality of evenly-divided regions; determining a brightness difference between a brightness value of each evenly-divided region and the maximum brightness value according to the maximum brightness value; and comparing the grayscale voltage corresponding to the brightness difference of each evenly-divided region with the grayscale voltage corresponding to the maximum grayscale, resultant ratios being the compensation coefficients for the grayscale voltages corresponding to the white subpixels in the evenly-divided regions.

10. The method according to claim 9 , wherein

the step of determining an evenly-divided region with the maximum brightness, the brightness value corresponding to the evenly-divided region being a maximum brightness value, from a plurality of evenly-divided regions; determining the brightness difference between the brightness value of each evenly-divided region and the maximum brightness value according to the maximum brightness value; and comparing the grayscale voltage corresponding to the brightness difference of each evenly-divided region with the grayscale voltage corresponding to the maximum grayscale, the resultant ratios being the compensation coefficients for the grayscale voltages corresponding to the white subpixels in the evenly-divided regions specifically comprises:

determining a pixel unit with the maximum brightness, the brightness value corresponding to the pixel unit being a maximum brightness value; determining a brightness difference between a brightness value of each pixel unit and the maximum brightness value; and comparing the grayscale voltage corresponding to the brightness value of each pixel unit with the grayscale voltage corresponding to the maximum grayscale, resultant ratios being the compensation coefficients for the grayscale voltages corresponding to the white subpixels in the pixel unit.

11. The method according to claim 7 , wherein

when the display device is powered on, an initial grayscale voltage corresponding to the white subpixels in the display device is read.

12. The method according to claim 7 , wherein

the initial grayscale voltage is an initial grayscale voltage corresponding to a maximum grayscale.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 19, 2014
From: CHEN, HUIJUAN; KIM, HYUNGKYU; ZHANG, DUO; CHEN, YANG
To: BOE TECHNOLOGY GROUP CO., LTD.; BEIJING BOE OPTOELECTRONICS TECHNOLOGY CO., LTD.
Reel/Frame 033779/0513 →
Priority Claims (1)
CN 2014 1 0081551 · Mar 6, 2014 · national
Continuity (1)
Related Publication 20150255025A1 · Sep 10, 2015