IP Library Granted Patent US 11,263,984
Granted Patent B2
US 11,263,984 · App. 16/887,829 · Granted Mar 1, 2022

Image signal luminance processing method, device and display apparatus

Inventors: Kuninori Miyazawa (Kanagawa, JP); Hidetaka Honji (Tokyo, JP)
Assignee: Sony Group Corporation
G09G3/3426G06T5/009G09G3/20G09G3/3208G09G3/34G09G3/3413G09G3/36H04N5/20G06T2207/20208G09G2320/0276G09G2320/0285G09G2320/0646G09G2340/06
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Quick Facts
Patent No.
US 11,263,984
App. No.
16/887,829
Granted
Mar 1, 2022
Kind
B2
Abstract

An image signal processing device of the present disclosure includes a luminance correction section that performs, on a basis of information on a maximum output luminance value in a display section, luminance correction on an image signal to be supplied to the display section, the maximum output luminance value being variable.

Claims (65)

1. An image signal processing device comprising:

a luminance correction circuit that performs, on a basis of information on a maximum output luminance value in a display section coupled to the luminance correction circuit, luminance correction on an image signal that is used to control driving of the display section, the maximum output luminance value being variable;

drive circuitry coupled to the display section and that provides a luminance value used to calculate the maximum output luminance value provided to the luminance correction circuit; and

a decoder that performs decoding on the image signal with use of an electro-optical transfer function,

wherein the luminance correction circuit performs luminance correction on the image signal having been subjected to the decoding,

wherein the luminance correction circuit performs, on the image signal having been subjected to the decoding, an opto-optical transfer function (OOTF) process on a basis of the maximum output luminance value, and

wherein the opto-optical transfer function (OOTF) process uses a gamma value which is corrected based on the maximum output luminance value.

2. An image signal processing device comprising:

a luminance correction circuit that performs, on a basis of information on a maximum output luminance value in a display section coupled to the luminance correction circuit, luminance correction on an image signal that is used to control driving of the display section, the maximum output luminance value being variable;

drive circuitry coupled to the display section and that provides a luminance value used to calculate the maximum output luminance value provided to the luminance correction circuit; and

a decoder that performs decoding on the image signal with use of an electro-optical transfer function,

wherein the luminance correction circuit performs luminance correction on the image signal having been subjected to the decoding, and

wherein the luminance correction circuit performs, on the image signal having been subjected to the decoding, an opto-optical transfer function (OOTF) process on a basis of the maximum output luminance value,

further comprising:

a first color space conversion circuit that converts the image signal having been subjected to the decoding from first color space to second color space, and outputs the thus-converted image signal to the luminance correction section; and

a second color space conversion circuit that converts an image signal having been subjected to the luminance correction by the luminance correction section from the second color space to the first color space.

3. The image signal processing device according to claim 2 , wherein

the second color space is HSV color space including three components, that is, hue, saturation, and value, and

the luminance correction circuit performs luminance correction on a signal of the value.

4. The image signal processing device according to claim 3 , wherein the luminance correction circuit performs luminance correction using a look-up table.

5. The image signal processing device according to claim 2 , wherein

the second color space is YUV color space including a luminance signal and a color-difference signal, and

the luminance correction circuit performs luminance correction on at least the luminance signal.

6. The image signal processing device according to claim 5 , further comprising a color correction circuit that performs correction on the color-difference signal on a basis of a ratio of a signal value of the luminance signal before being subjected to luminance correction and a signal value having been subjected to the luminance correction.

7. An image signal processing device comprising:

a luminance correction circuit that performs, on a basis of information on a maximum output luminance value in a display section coupled to the luminance correction circuit, luminance correction on an image signal that is used to control driving of the display section, the maximum output luminance value being variable;

drive circuitry coupled to the display section and that provides a luminance value used to calculate the maximum output luminance value provided to the luminance correction circuit; and

a decoder that performs decoding on the image signal with use of an electro-optical transfer function,

wherein the luminance correction circuit performs luminance correction on the image signal having been subjected to the decoding,

wherein the luminance correction circuit performs, on the image signal having been subjected to the decoding, an opto-optical transfer function (OOTF) process on a basis of the maximum output luminance value, and

wherein the luminance correction circuit includes a color gamut conversion circuit that performs, on the image signal having been subjected to the decoding, color gamut conversion on a basis of a color gamut conversion matrix multiplied by a correction coefficient based on the maximum output luminance value.

8. A display apparatus comprising:

a display section having a variable maximum output luminance value;

a luminance correction circuit that performs, on a basis of information on a maximum output luminance value in a display section coupled to the luminance correction circuit, luminance correction on an image signal that is used to control driving of the display section, the maximum output luminance value being variable;

drive circuitry coupled to the display section and that provides a luminance value used to calculate the maximum output luminance value provided to the luminance correction circuit; and

a decoder that performs decoding on the image signal with use of an electro-optical transfer function,

wherein the luminance correction circuit performs luminance correction on the image signal having been subjected to the decoding,

wherein the luminance correction circuit performs, on the image signal having been subjected to the decoding, an opto-optical transfer function (OOTF) process on a basis of the maximum output luminance value, and

wherein the opto-optical transfer function (OOTF) process uses a gamma value which is corrected based on the maximum output luminance value.

9. A display apparatus comprising:

a display section having a variable maximum output luminance value;

a luminance correction circuit that performs, on a basis of information on a maximum output luminance value in a display section coupled to the luminance correction circuit, luminance correction on an image signal that is used to control driving of the display section, the maximum output luminance value being variable;

drive circuitry coupled to the display section and that provides a luminance value used to calculate the maximum output luminance value provided to the luminance correction circuit; and

a decoder that performs decoding on the image signal with use of an electro-optical transfer function,

wherein the luminance correction circuit performs luminance correction on the image signal having been subjected to the decoding, and

wherein the luminance correction circuit performs, on the image signal having been subjected to the decoding, an opto-optical transfer function (OOTF) process on a basis of the maximum output luminance value,

further comprising:

a first color space conversion circuit that converts the image signal having been subjected to the decoding from first color space to second color space, and outputs the thus-converted image signal to the luminance correction section; and

a second color space conversion circuit that converts an image signal having been subjected to the luminance correction by the luminance correction section from the second color space to the first color space.

10. The display apparatus according to claim 9 , wherein

the second color space is HSV color space including three components, that is, hue, saturation, and value, and

the luminance correction circuit performs luminance correction on a signal of the value.

11. The display apparatus according to claim 10 , wherein the luminance correction circuit performs luminance correction using a look-up table.

12. The display apparatus according to claim 9 , wherein

the second color space is YUV color space including a luminance signal and a color-difference signal, and

the luminance correction circuit performs luminance correction on at least the luminance signal.

13. The display apparatus according to claim 12 , further comprising a color correction circuit that performs correction on the color-difference signal on a basis of a ratio of a signal value of the luminance signal before being subjected to luminance correction and a signal value having been subjected to the luminance correction.

14. A display apparatus comprising:

a display section having a variable maximum output luminance value;

a luminance correction circuit that performs, on a basis of information on a maximum output luminance value in a display section coupled to the luminance correction circuit, luminance correction on an image signal that is used to control driving of the display section, the maximum output luminance value being variable;

drive circuitry coupled to the display section and that provides a luminance value used to calculate the maximum output luminance value provided to the luminance correction circuit; and

a decoder that performs decoding on the image signal with use of an electro-optical transfer function,

wherein the luminance correction circuit performs luminance correction on the image signal having been subjected to the decoding,

wherein the luminance correction circuit performs, on the image signal having been subjected to the decoding, an opto-optical transfer function (OOTF) process on a basis of the maximum output luminance value, and

wherein the luminance correction circuit includes a color gamut conversion circuit that performs, on the image signal having been subjected to the decoding, color gamut conversion on a basis of a color gamut conversion matrix multiplied by a correction coefficient based on the maximum output luminance value.

Assignments (2)
CHANGE OF NAME Recorded Aug 17, 2021
From: SONY CORPORATION
To: SONY GROUP CORPORATION
Reel/Frame 057207/0835 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 29, 2020
From: MIYAZAWA, KUNINORI; HONJI, HIDETAKA
To: SONY CORPORATION
Reel/Frame 053349/0160 →
Priority Claims (1)
JP 2015-152635 · Jul 31, 2015 · national
Continuity (2)
Continuation 15743436
Related Publication 20200312255A1 · Oct 1, 2020