IP Library › Granted Patent US 11,699,413
Granted Patent B2
US 11,699,413 · App. 17/445,173 · Granted Jul 11, 2023

Afterimage compensation device and display device including the same

Inventor: Jun Gyu Lee (Seoul, KR)
Assignee: Samsung Display Co., Ltd.
G09G5/10G09G3/20G09G2320/0257G09G2320/0646
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Quick Facts
Patent No.
US 11,699,413
App. No.
17/445,173
Granted
Jul 11, 2023
Kind
B2
Abstract

An afterimage compensation device includes: an afterimage area detector to receive an input image, and detect an afterimage area including an afterimage in the input image; an afterimage area corrector to detect a false detection area, and generate a corrected afterimage area, the false detection area being a part of a general area that is not detected as the afterimage area and surrounded in a plurality of directions by the detected afterimage area; and a compensation data generator to adjust a luminance of the corrected afterimage area to generate compensation data.

Claims (55)

1. An afterimage compensation device comprising:

an afterimage area detector configured to receive an input image, and detect an afterimage area comprising an afterimage in the input image;

an afterimage area corrector configured to detect a false detection area, and generate a corrected afterimage area, the false detection area being a part of a general area that is not detected as the afterimage area and surrounded in a plurality of directions by the detected afterimage area; and

a compensation data generator configured to adjust a luminance of the corrected afterimage area to generate compensation data.

2. The afterimage compensation device of claim 1 ,

wherein the afterimage area corrector is configured to determine an area that is surrounded in at least three directions from among an upward direction, a downward direction, a left direction, and a right direction by the afterimage area in which the part of the general area is detected as the false detection area.

3. The afterimage compensation device of claim 1 ,

wherein the afterimage area corrector is configured to determine an area in which a boundary surface of the part of the general area has a radius of curvature lower than a preset radius of curvature as the false detection area.

4. The afterimage compensation device of claim 1 ,

wherein the afterimage area corrector is configured to determine the part of the general area as the false detection area when a size or a number of pixels of the part of the general area surrounded by the detected afterimage area is smaller than a preset size or number of pixels.

5. The afterimage compensation device of claim 1 ,

wherein the afterimage area detector is configured to receive a plurality of example images, and detect an afterimage area of each of the plurality of example images, and

wherein the afterimage area corrector is configured to receive a designated false detection area designated based on the afterimage area of each of the plurality of example images, and cluster a pixel size of the designated false detection area to store a plurality of clusters according to a result of the clustering.

6. The afterimage compensation device of claim 5 ,

wherein the afterimage area corrector is configured to calculate a median value of the pixel size based on the plurality of clusters, and

wherein the afterimage area corrector is configured to determine an area between afterimage areas detected from the input image as the false detection area when a distance between the afterimage areas detected from the input image is equal to or less than the median value of the pixel size.

7. The afterimage compensation device of claim 5 ,

wherein the afterimage area corrector is configured to calculate a median value of the pixel size based on the plurality of clusters, and

wherein the afterimage area corrector is configured to determine an area between detected afterimage areas as the general area when a distance between the detected afterimage areas detected from the input image is more than the median value of the pixel size.

8. The afterimage compensation device of claim 1 ,

wherein the afterimage area corrector is configured to correct an extended area extended from a boundary of the after image detected from the afterimage area detector by a preset pixel size as the corrected afterimage area.

9. The afterimage compensation device of claim 8 ,

wherein the afterimage area corrector is configured to determine a pixel size of the extended area in a corresponding direction based on a length of the detected afterimage area in the corresponding direction.

10. The afterimage compensation device of claim 9 ,

wherein the pixel size of the extended area in the corresponding direction is proportional to the length of the detected afterimage area in the corresponding direction, is proportional to a log value of the length of the detected afterimage area in the corresponding direction, or is proportional to an n square root of the length of the detected afterimage area in the corresponding direction, where n is a natural number of 2 or more.

11. The afterimage compensation device of claim 8 ,

wherein the compensation data generator is configured to reduce a luminance of the general area adjacent to the corrected afterimage area as a distance from the corrected afterimage area increases.

12. The afterimage compensation device of claim 8 ,

wherein the compensation data generator is configured to uniformly apply a luminance gain of the corrected afterimage area, and reduce a luminance gain of the general area as a distance from the corrected afterimage area increases.

13. The afterimage compensation device of claim 12 ,

wherein a magnitude of a derivative of the luminance gain of the general area increases as a distance from the corrected afterimage area increases, reaches a maximum value at a specific point, and decreases as a distance from the corrected afterimage area and the specific point increases.

14. An afterimage compensation device comprising:

an afterimage area detector configured to receive an input image, and detect an afterimage area comprising an afterimage in the input image;

an afterimage area corrector configured to correct an extended area extended from a boundary of the detected afterimage area by a preset pixel size as a corrected afterimage area; and

a compensation data generator configured to adjust a luminance of the corrected afterimage area to generate compensation data,

wherein the afterimage area corrector is configured to determine a pixel size of the extended area in a corresponding direction that is proportional based on a length of the detected afterimage area in the corresponding direction.

15. The afterimage compensation device of claim 14 ,

wherein the pixel size of the extended area in the corresponding direction is proportional to the length of the detected afterimage area in the corresponding direction, is proportional to a log value of the length of the detected afterimage area in the corresponding direction, or is proportional to an n square root of the length of the detected afterimage area in the corresponding direction, where n is a natural number of 2 or more.

16. The afterimage compensation device of claim 14 ,

wherein the compensation data generator is configured to uniformly apply a luminance gain of the corrected afterimage area, and reduce a luminance gain of a general area as a distance from the corrected afterimage area increases.

17. The afterimage compensation device of claim 16 ,

wherein a magnitude of a derivative of the luminance gain of the general area increases as a distance from the corrected afterimage area increases, reaches a maximum value at a specific point, and decreases as a distance from the corrected afterimage area and the specific point increases.

18. A display device comprising:

an afterimage compensation device configured to detect an afterimage area from an input image, correct the detected afterimage area to generate a corrected afterimage area, and output compensation data applied to the corrected afterimage area;

a timing controller configured to generate pixel data based on the compensation data; and

a display panel configured to display an image based on the pixel data,

wherein the afterimage compensation device comprises:

an afterimage area detector configured to receive the input image, and detect the afterimage area comprising an afterimage in the input image;

an afterimage area corrector configured to detect a false detection area, and generate the corrected afterimage area, the false detection area being in a part of a general area not detected as the afterimage area and surrounded in a plurality of directions by the detected afterimage area; and

a compensation data generator configured to adjust a luminance of the corrected afterimage area to generate the compensation data.

19. The display device of claim 18 ,

wherein the afterimage area detector is configured to receive a plurality of example images, and detect an afterimage area of each of the plurality of example images, and

wherein the afterimage area corrector is configured to receive a designated false detection area designated based on the afterimage area of each of the plurality of example images, calculate a median value of a pixel size based on a plurality of clusters obtained by clustering the pixel size of the false detection area, and detect the false detection area based on the median value of the pixel size.

20. The display device of claim 18 ,

wherein the afterimage area corrector is configured to correct an area extended from a boundary of the afterimage area detected from the afterimage area detector by a preset pixel size as the corrected afterimage area.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 16, 2021
From: LEE, JUN GYU
To: SAMSUNG DISPLAY CO., LTD.
Reel/Frame 057291/0102 →
Priority Claims (1)
KR 10-2020-0132512 · Oct 14, 2020 · national
Continuity (1)
Related Publication 20220114986A1 · Apr 14, 2022
Cited By (1)
US 12,548,502