IP Library Granted Patent US 11,924,551
Granted Patent B2
US 11,924,551 · App. 18/132,673 · Granted Mar 5, 2024

Method and apparatus for correcting blur in all or part of an image

Inventor: Fatih M. Ozluturk (Sands Point, NY)
Assignee: CLEAR IMAGING RESEARCH, LLC
H04N23/687G02B27/646G06T5/002G06T5/003G06T7/20H04N5/265H04N23/62H04N23/68H04N23/681H04N23/6811H04N23/6812H04N23/683H04N23/80H04N25/615G06T2207/10004G06T2207/10016G06T2207/20024G06T2207/20201G06T2207/20212
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Quick Facts
Patent No.
US 11,924,551
App. No.
18/132,673
Granted
Mar 5, 2024
Kind
B2
Abstract

A method, apparatus, and processor for capturing digital images. The method comprising: displaying a preview scene to be captured in a user interface of the imaging device, capturing a plurality of images using a lens having one or more lens elements and at least one moveable lens element, and moving the moveable lens element electro-mechanically to counter an effect of motion. The method further including processing the plurality of images, receiving and executing instructions stored in a memory of the imaging device, to obtain a corrected image, such that the corrected image includes a first and second subject, the first subject in the corrected image is blur free, and the second subject in the corrected image is blurred compared to the first subject, storing the corrected image in the memory, and displaying the corrected image in the user interface.

Claims (52)

1. A method for use in an imaging device for capturing digital images, the method comprising:

displaying a preview of a scene to be captured in a user interface of the imaging device;

capturing a plurality of images using a lens having one or more lens elements and at least one moveable lens element movable relative to the imaging device, wherein the plurality of images include a first subject and a second subject;

moving the at least one moveable lens element of the lens electro-mechanically to counter an effect of motion of the imaging device;

processing the plurality of images by a processor of the imaging device, the processor receiving and executing instructions stored in a memory of the imaging device, to obtain a corrected image, such that

the corrected image includes the first subject and the second subject, the first subject in the corrected image is blur free, and the second subject in the corrected image is blurred compared to the first subject;

storing the corrected image in the memory of the imaging device; and

displaying the corrected image in the user interface of the imaging device.

2. The method of claim 1 , wherein the method further comprises:

displaying the corrected image in the user interface;

receiving a user input in the user interface, wherein the user input selects the second subject in the corrected image;

processing the plurality of images by the processor to obtain a second corrected image, such that the second corrected image includes the first subject and the second subject, the second subject in the second corrected image is blur free, and the first subject in the second corrected image is blurred compared to the second subject;

storing the second corrected image in the memory; and

displaying the second corrected image in the user interface.

3. The method of claim 1 , wherein the imaging device receives a user input in the user interface of the imaging device and the user input designates the first subject to be blur free in the corrected image.

4. The method of claim 1 , wherein the processor designates the first subject to be blur free in the corrected image.

5. The method of claim 1 , wherein the processing of the images includes calculating by the processor a pixel value for each pixel representing an image point of the first subject in the corrected image based on values of the pixels representing the image point of the first subject in one or more of the plurality of images.

6. The method of claim 1 , wherein areas of the corrected image other than the first subject are blurred compared to areas other than the first subject in the plurality of images being processed.

7. The method of claim 1 , wherein processing the plurality of images comprises modifying one or more of the plurality of images such that the first subject in the plurality of images is aligned in a same location in the corrected image.

8. An imaging device for capturing digital images, comprising:

a user interface configured to display a preview of a scene to be captured;

at least one image sensor for capturing a plurality of images, wherein the plurality of images include a first subject and a second subject;

at least one lens optically connected to the at least one image sensor, wherein the lens includes one or more lens elements, at least one of the lens elements electro-mechanically movable relative to the imaging device;

a memory configured to store instructions for execution by a processor;

the processor, wherein the processor is connected to the memory for receiving instructions stored therein, and executing the instructions by the processor causes the processor to correct the plurality of images to obtain a corrected image, such that the corrected image includes the first subject and the second subject, the first subject in the corrected image is blur free and the second subject in the corrected image is blurred compared to the first subject;

the memory further configured to store the corrected image; and

the user interface further configured to display the corrected image.

9. The imaging device of claim 8 , wherein:

the user interface is further configured to display the corrected image and to receive a user input, wherein the user input selects the second subject in the corrected image;

the instructions, when executed by the processor further cause the processor to process the plurality of images to obtain a second corrected image, such that the second corrected image includes the first subject and the second subject, the second subject in the second corrected image is blur free, and the first subject in the second corrected image is blurred compared to the second subject;

the memory is further configured to store the second corrected image; and

the user interface is further configured to display the second corrected image.

10. The imaging device of claim 8 , wherein executing the instructions by the processor further causes the processor to calculate a pixel value for each pixel representing an image point of the first subject in the corrected image based on values of the pixels representing the image point of the first subject in the one or more of the plurality of images.

11. The imaging device of claim 8 , wherein the user interface is further configured to receive a user input and the user input designates the first subject to be blur free in the corrected image.

12. The imaging device of claim 8 , wherein executing the instructions by the processor further causes the processor to designate the first subject to be blur free in the corrected image.

13. The imaging device of claim 8 , wherein executing the instructions by the processor further causes the processor to process the plurality of images to obtain the corrected image such that areas of the corrected image other than the first subject are blurred compared to areas other than the first subject in the plurality of images being processed.

14. The imaging device of claim 8 , wherein executing the instructions by the processor further causes the processor to modify the plurality of images such that the first subject in the plurality of images is aligned in a same location in the corrected image.

15. A processor for use in an imaging device, wherein the processor is connected to a memory of the imaging device, the memory holding instructions for execution by the processor, wherein receiving and executing the instructions by the processor causes the processor to:

move at least one movable lens element within a lens of the imaging device electro-mechanically to counter an effect of a motion of the imaging device, wherein the lens includes one or more lens elements and at least one of the lens elements is movable relative to the imaging device;

receive a plurality of images captured by at least one image sensor and the lens of the imaging device, wherein the plurality of images include a first subject and a second subject;

process the plurality of images to obtain a corrected image, such that the corrected image includes the first subject and the second subject, the first subject in the corrected image is blur free and the second subject in the corrected image is blurred compared to the first subject;

store the corrected image in the memory of the imaging device; and

display the corrected image in user interface of the imaging device.

16. The processor of claim 15 , wherein executing the instructions by the processor further causes the processor to:

display the corrected image in the user interface of the imaging device and receive a user input via the user interface, wherein the user input selects the second subject in the corrected image;

correct the plurality of images to obtain a second corrected image, such that the second corrected image includes the first subject and the second subject, the second subject in the second corrected image is blur free, and the first subject in the second corrected image is blurred compared to the second subject;

store the second corrected image in the memory of the imaging device; and

display the second corrected image in the user interface of the imaging device.

17. The processor of claim 15 , wherein executing the instructions by the processor further causes the processor to calculate a pixel value for each pixel representing an image point of the first subject in the corrected image based on values of the pixels representing the image point of the first subject in the one or more of the plurality of images.

18. The processor of claim 15 , wherein executing the instructions by the processor further causes the processor to receive a user input via the user interface of the imaging device and the user input designates the first subject to be blur free in the corrected image.

19. The processor of claim 15 , wherein executing the instructions by the processor further causes the processor to process the plurality of images to obtain the corrected image such that areas of the corrected image other than the first subject are blurred compared to areas other than the first subject in the plurality of images being processed.

20. The processor of claim 15 , wherein executing the instructions by the processor further causes the processor to modify the plurality of images such that the first subject in the plurality of images is aligned in a same location in the corrected image.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 26, 2024
From: OZLUTURK, FATIH; OZLUTURK & CO, LLC; CLEAR IMAGING, LLC
To: CLEAR IMAGING RESEARCH, LLC
Reel/Frame 066255/0576 →
Continuity (13)
Continuation 17514486 · Oct 29, 2021
Continuation 17066882 · Oct 9, 2020
Continuation 16544426 · Aug 19, 2019
Continuation 15858339 · Dec 29, 2017
Continuation 15431332 · Feb 13, 2017
Continuation 15149481 · May 9, 2016
Continuation 14690818 · Apr 20, 2015
Continuation 14532654 · Nov 4, 2014
Continuation 13442370 · Apr 9, 2012
Continuation 12274032 · Nov 19, 2008
Continuation 11089081 · Mar 24, 2005
Provisional Application 60556230 · Mar 25, 2004
Related Publication 20230247295A1 · Aug 3, 2023