IP Library Granted Patent US 11,533,422
Granted Patent B2
US 11,533,422 · App. 17/308,491 · Granted Dec 20, 2022

Apparatus, image capturing apparatus, method, and storage medium for performing shooting control

Inventor: Yu Inagaki (Tokyo, JP)
Assignee: CANON KABUSHIKI KAISHA
H04N5/232121H04N5/232127
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,533,422
App. No.
17/308,491
Granted
Dec 20, 2022
Kind
B2
Abstract

A detection unit detects a subject area that partially includes a subject to be detected in a shooting range. An obtainment unit obtains a plurality of defocus amounts corresponding to a plurality of ranging points inside a ranging area that includes the subject area. A categorization unit categorizes the ranging area into a plurality of partial areas based on the plurality of defocus amounts. Each of the plurality of partial areas corresponds to a different one of partial ranges in a range of the plurality of defocus amounts. A control unit performs shooting control based on the plurality of partial areas. The shooting control is performed so that a contribution of a partial area with a first subject degree is larger than a contribution of a partial area with a second subject degree that is lower than the first subject degree.

Claims (63)

1. An apparatus, comprising:

at least one processor; and

a memory that stores a program which, when executed by the at least one processor, causes the at least one processor to function as:

a detection unit configured to detect, in a shooting range, a subject area that includes a first portion in which a subject to be detected exists and a second portion in which the subject to be detected does not exist;

an obtainment unit configured to obtain a plurality of defocus amounts corresponding to a plurality of ranging points inside a ranging area that includes the subject area, wherein the plurality of ranging points comprises a first ranging point within the first portion of the subject area and a second ranging point within the second portion of the subject area;

a categorization unit configured to categorize the ranging area into a plurality of partial areas based on the plurality of defocus amounts, each of the plurality of partial areas corresponding to a different one of partial ranges in a range of the plurality of defocus amounts, wherein the first ranging point within the first portion of the subject area belongs to a first partial area of the plurality of partial areas;

a determination unit configured to determine a subject degree with respect to each of the plurality of partial areas based on geometric relationships between each of the plurality of partial areas and the subject area, the subject degree indicating a possibility that the subject to be detected exists; and

a control unit configured to perform shooting control based on the plurality of partial areas, the shooting control being performed so that a contribution of a partial area with a first subject degree is larger than a contribution of a partial area with a second subject degree that is lower than the first subject degree.

2. The apparatus according to claim 1 , wherein

the geometric relationships between each of the plurality of partial areas and the subject area include at least one of a positional relationship and a size relationship.

3. The apparatus according to claim 1 , wherein the determination unit determines the subject degree of each of the plurality of partial areas based on a shape of each of the plurality of partial areas, in addition to the geometric relationships between each of the plurality of partial areas and the subject area.

4. The apparatus according to claim 1 , wherein

the determination unit

calculates first evaluation values respectively for the plurality of partial areas based on the positional relationship between each of the plurality of partial areas and the subject area,

calculates second evaluation values respectively for the plurality of partial areas based on the size relationship between each of the plurality of partial areas and the subject area,

calculates third evaluation values respectively for the plurality of partial areas based on respective shapes of the plurality of partial areas, and

determines the subject degree of each of the plurality of partial areas based on the first evaluation value, the second evaluation value, and the third evaluation value of each of the plurality of partial areas.

5. The apparatus according to claim 1 , wherein the ranging area is larger than the subject area and includes an entirety of the subject area.

6. The apparatus according to claim 1 , wherein

the control unit performs the shooting control based solely on a partial area that has a highest subject degree among the plurality of partial areas.

7. The apparatus according to claim 1 , wherein the shooting control includes computation whereby each of the plurality of partial areas is regarded as a target partial area and pixel values of the target partial area are weighted based on the subject degree of the target partial area.

8. The apparatus according to claim 1 , wherein

the shooting control is focus control, white balance control, or exposure control.

9. The apparatus according to claim 1 , wherein

the shooting control is focus control, and

the control unit

selects a first defocus amount with a reliability degree equal to or higher than a reliability degree threshold from among a first plurality of defocus amounts corresponding to a plurality of ranging points inside a partial area that has a highest subject degree among the plurality of partial areas, and

performs the focus control based on the first defocus amount.

10. The apparatus according to claim 9 , wherein

when the first plurality of defocus amounts do not include a defocus amount with a reliability degree equal to or higher than the reliability degree threshold, the control unit

selects a second defocus amount with a reliability degree equal to or higher than the reliability degree threshold from among a second plurality of defocus amounts corresponding to a plurality of ranging points inside a partial area that has a second highest subject degree, next to the highest subject degree, among the plurality of partial areas, and

performs the focus control based on the second defocus amount.

11. An image capturing apparatus, comprising:

the apparatus according to claim 1 ; and

an image sensor.

12. The image capturing apparatus according to claim 11 , wherein the geometric relationships between each of the plurality of partial areas and the subject area include at least one of a positional relationship and a size relationship.

13. A method executed by an apparatus, comprising:

detecting, in a shooting range, a subject area that includes a first portion in which a subject to be detected exists and a second portion in which the subject to be detected does not exist;

obtaining a plurality of defocus amounts corresponding to a plurality of ranging points inside a ranging area that includes the subject area, wherein the plurality of ranging points comprises a first ranging point within the first portion of the subject area and a second ranging point within the second portion of the subject area;

categorizing the ranging area into a plurality of partial areas based on the plurality of defocus amounts, each of the plurality of partial areas corresponding to a different one of partial ranges in a range of the plurality of defocus amounts, wherein the first ranging point within the first portion of the subject area belongs to a first partial area of the plurality of partial areas;

determining a subject degree with respect to each of the plurality of partial areas based on geometric relationships between each of the plurality of partial areas and the subject area, the subject degree indicating a possibility that the subject to be detected exists; and

performing shooting control based on the plurality of partial areas, the shooting control being performed so that a contribution of a partial area with a first subject degree is larger than a contribution of a partial area with a second subject degree that is lower than the first subject degree.

14. The method according to claim 13 , wherein the geometric relationships between each of the plurality of partial areas and the subject area include at least one of a positional relationship and a size relationship.

15. The method according to claim 13 , wherein the determining determines the subject degree of each of the plurality of partial areas based on a shape of each of the plurality of partial areas, in addition to the geometric relationships between each of the plurality of partial areas and the subject area.

16. The method according to claim 13 , wherein the determining

calculates first evaluation values respectively for the plurality of partial areas based on the positional relationship between each of the plurality of partial areas and the subject area,

calculates second evaluation values respectively for the plurality of partial areas based on the size relationship between each of the plurality of partial areas and the subject area,

calculates third evaluation values respectively for the plurality of partial areas based on respective shapes of the plurality of partial areas, and

determines the subject degree of each of the plurality of partial areas based on the first evaluation value, the second evaluation value, and the third evaluation value of each of the plurality of partial areas.

17. A non-transitory computer-readable storage medium which stores a program for causing a computer to execute a method comprising:

detecting, in a shooting range, a subject area that includes a first portion in which a subject to be detected exists and a second portion in which the subject to be detected does not exist;

obtaining a plurality of defocus amounts corresponding to a plurality of ranging points inside a ranging area that includes the subject area, wherein the plurality of ranging points comprises a first ranging point within the first portion of the subject area and a second ranging point within the second portion of the subject area;

categorizing the ranging area into a plurality of partial areas based on the plurality of defocus amounts, each of the plurality of partial areas corresponding to a different one of partial ranges in a range of the plurality of defocus amounts, wherein the first ranging point within the first portion of the subject area belongs to a first partial area of the plurality of partial areas;

determining a subject degree with respect to each of the plurality of partial areas based on geometric relationships between each of the plurality of partial areas and the subject area, the subject degree indicating a possibility that the subject to be detected exists; and

performing shooting control based on the plurality of partial areas, the shooting control being performed so that a contribution of a partial area with a first subject degree is larger than a contribution of a partial area with a second subject degree that is lower than the first subject degree.

18. The non-transitory computer-readable storage medium according to claim 17 , wherein the geometric relationships between each of the plurality of partial areas and the subject area include at least one of a positional relationship and a size relationship.

19. The non-transitory computer-readable storage medium according to claim 17 , wherein the determining determines the subject degree of each of the plurality of partial areas based on a shape of each of the plurality of partial areas, in addition to the geometric relationships between each of the plurality of partial areas and the subject area.

20. The non-transitory computer-readable storage medium according to claim 17 , wherein the determining

calculates first evaluation values respectively for the plurality of partial areas based on the positional relationship between each of the plurality of partial areas and the subject area,

calculates second evaluation values respectively for the plurality of partial areas based on the size relationship between each of the plurality of partial areas and the subject area,

calculates third evaluation values respectively for the plurality of partial areas based on respective shapes of the plurality of partial areas, and

determines the subject degree of each of the plurality of partial areas based on the first evaluation value, the second evaluation value, and the third evaluation value of each of the plurality of partial areas.

21. The apparatus according to claim 1 , wherein the second ranging point within the second portion of the subject area belongs to a second partial area, which is different from the first partial area, of the plurality of partial areas.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 10, 2021
From: INAGAKI, YU
To: CANON KABUSHIKI KAISHA
Reel/Frame 056492/0519 →
Priority Claims (1)
JP JP2020-084791 · May 13, 2020 · national
Continuity (1)
Related Publication 20210360165A1 · Nov 18, 2021