IP Library Patent Application 12052305
Patent Application
App. No. 12/052,305

METHODS AND APPARATUSES FOR SHARPENING IMAGES

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Quick Facts
Patent No.
US None
App. No.
12/052,305
Abstract

Methods and apparatuses for sharpening imaging pixel signals. Embodiments provide methods of sharpening that preserves the pixel's saturation and apparatuses therefor. In essence, rather than changing only the pixels' luminance, the effective exposure of the pixel is changed.

Claims (63)

1 . A method of processing signals from an array of imaging pixels, comprising the acts of:

inputting first, second and third color signals;

determining an incident luminance as a function of the input first, second and third color signals;

applying a sharpening correction to the incident luminance to determine a sharpened luminance component; and

applying an algorithm to determine sharpened first, second and third color signals.

2 . The method of claim 1 , wherein applying an algorithm comprises determining a luminance gain using the sharpened luminance component and the incident luminance;

determining a first color-difference component using the incident luminance and the first color signal;

determining a second color-difference component using the incident luminance and the second color signal;

determining a first sharpened color-difference component using the first color-difference component and the luminance gain; and

determining a second sharpened color-difference component using the second color-difference component and the luminance gain.

3 . The method of claim 1 , wherein the first, second, and third color signals are red, blue and green signals, respectively.

4 . The method of claim 1 , wherein the sharpening correction is less than or equal to zero.

5 . The method of claim 1 , if the sharpening correction is less than zero, further comprising determining a corrected luminance gain by reducing the luminance gain by a predetermined amount.

6 . The method of claim 2 , wherein the act of determining the luminance gain comprises dividing the sharpened luminance component by the incident luminance.

7 . The method of claim 2 , wherein the act of determining a first sharpened color-difference component comprises multiplying the first color-difference component by the luminance gain.

8 . The method of claim 2 , wherein the act of determining a second sharpened color-difference component comprises multiplying the second color-difference component by the luminance gain.

9 . The method of claim 1 , further comprising performing the act of tonal correction on the first second and third color signals.

10 . The method of claim 2 , further comprising:

determining a first sharpened color component using the first sharpened color-difference component and sharpened luminance component;

determining a second sharpened color component using the second sharpened color-difference component and sharpened luminance component; and

determining a third sharpening color component using the first and second sharpening color components and the sharpened luminance component.

11 . An imaging device comprising:

an input device for capturing incident light and converting incident light into incident first, second and third color signals;

a processor configured for:

determining an incident luminance as a function of the input first, second and third color signals;

applying a sharpening correction to the incident luminance to determine a sharpened luminance component;

determining a luminance gain using the sharpened luminance component and the incident luminance;

determining a first color-difference component using the incident luminance and the first color signal;

determining a second color-difference component using the incident luminance and the second color signal;

determining a first sharpened color-difference component using the first color-difference component and the luminance gain;

determining a second sharpened color-difference component using the second color-difference component and the luminance gain;

determining a first sharpened color component using the first sharpened color-difference component and sharpened luminance component;

determining a second sharpened color component using the second sharpened color-difference component and sharpened luminance component;

determining a third sharpening color component using the first and second sharpening color components and the sharpened luminance component; and

an output device for outputting first, second and third sharpened color components.

12 . The imaging device of claim 11 , wherein the first, second, and third color signals are red, blue and green signals, respectively.

13 . The imaging device of claim 11 , wherein the sharpening correction is less than or equal to zero.

14 . The imaging device of claim 11 , if the sharpening correction is less than zero, further comprising determining a corrected luminance gain by reducing the luminance gain by a predetermined amount.

15 . The imaging device of claim 11 , wherein determining the luminance gain comprises dividing the sharpened luminance component by the incident luminance.

16 . The imaging device of claim 11 , wherein determining a first sharpened color-difference component comprises multiplying the first color-difference component by the luminance gain.

17 . The imaging device of claim 11 , wherein determining a second sharpened color-difference component comprises multiplying the second color-difference component by the luminance gain.

18 . The imaging device of claim 11 , wherein the processor is configured to further perform tonal correction.

19 . A camera device comprising:

a lens structure for imaging a scene;

an input device including a pixel array for capturing incident light received from the lens structure and a circuit for converting the captured incident light for an image pixel into an incident luminance signal, a first color difference and a second color difference; and

a processor configured for:

determining an incident luminance as a function of the input first, second and third color signals;

applying a sharpening correction to the incident luminance to determine a sharpened luminance component;

determining a luminance gain using the sharpened luminance component by the incident luminance;

determining a first color-difference component using the incident luminance and the first color signal;

determining a second color-difference component using the incident luminance and the second color signal;

determining a first sharpened color-difference component using the first color-difference component and the luminance gain; and

determining a second sharpened color-difference component using the second color-difference component and the luminance gain.

20 . The camera device of claim 19 , wherein the processor is further configured for:

determining a first sharpened color component using the first sharpened color-difference component and sharpened luminance component;

determining a second sharpened color component using the second sharpened color-difference component and sharpened luminance component; and

determining a third sharpening color component using the first and second sharpening color components ant the sharpened luminance component.

21 . The camera device of claim 19 , wherein the first, second, and third color signals are red, blue and green signals, respectively.

22 . The camera device of claim 19 , wherein the sharpening correction is less than or equal to zero.

23 . The camera device of claim 19 , if the sharpening correction is less than zero, further comprising determining a corrected luminance gain by reducing the luminance gain by a predetermined amount.

24 . The camera device of claim 19 , wherein determining the luminance gain comprises dividing the sharpened luminance component by the incident luminance.

25 . The camera device of claim 19 , wherein determining a first sharpened color-difference component comprises multiplying the first color-difference component by the luminance gain.

26 . The camera device of claim 19 , wherein determining a second sharpened color-difference component comprises multiplying the second color-difference component by the luminance gain.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 28, 2009
From: MICRON TECHNOLOGY, INC.
To: APTINA IMAGING CORPORATION
Reel/Frame 023245/0186 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 20, 2008
From: OVSIANNIKOV, ILIA
To: MICRON TECHNOLOGY, INC.
Reel/Frame 020681/0774 →