IP Library › Granted Patent US 8,670,158
Granted Patent B2
US 8,670,158 · App. 13/183,042 · Granted Mar 11, 2014

Image processing apparatus and method for reducing gradation level of image

Inventors: Masaaki Saka (Toyohashi, JP); Tomohiro Yamaguchi (Shinshiro, JP)
Assignee: Konica Minolta Business Technologies, Inc.
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Quick Facts
Patent No.
US 8,670,158
App. No.
13/183,042
Granted
Mar 11, 2014
Kind
B2
Abstract

An image processing apparatus includes a first generation portion that generates a first low-gradation image by performing a first process on an input image to reduce the number of gradations of the input image, a second generation portion that generates a second low-gradation image by performing a second process on the input image to reduce the number of gradations of the input image, a density detector that detects a density of the input image, a determination portion that determines, based on the density, a ratio at which the first low-gradation image and the second low-gradation image are blended together, and a mixing portion that blends the first low-gradation image and the second low-gradation image in accordance with the ratio.

Claims (56)

1. An image processing apparatus comprising:

a first generation portion that generates a first low-gradation image by performing a first process on an input image to reduce the number of gradations of the input image;

a second generation portion that generates a second low-gradation image by performing a second process on the input image to reduce the number of gradations of the input image;

a density detector that detects a density of the input image;

a determination portion that determines, based on the density, a ratio at which the first low-gradation image and the second low-gradation image are blended together;

a mixing portion that blends the first low-gradation image and the second low-gradation image in accordance with the ratio; and

a line-appearance-frequency detector that detects a frequency indicating how often a line constituted by a plurality of dots continuously disposed appears, or, indicating how often a line constituted by a plurality of dots regularly and intermittently disposed appears, wherein the determination portion determines the ratio in such a manner that the higher the frequency is, the higher the ratio becomes.

2. The image processing apparatus according to claim 1 , wherein

the first generation portion generates the first low-gradation image by performing screen processing as the first process,

the second generation portion generates the second low-gradation image by performing error diffusion processing as the second process, and

the determination portion determines the ratio in such a manner that the higher the density is, the higher the ratio becomes.

3. An image processing apparatus comprising:

a first generation portion that generates a first low-gradation image by performing screen processing on an input image to reduce the number of gradations of the input image;

a second generation portion that generates a second low-gradation image by performing error diffusion processing on the input image to reduce the number of gradations of the input image,

a density detector that detects a density of the input image;

a determination portion that determines, based on the density, a ratio at which the first low-gradation image and the second low-gradation image are blended together, wherein the ratio is determined in such a manner that the higher the density is, the higher the ratio becomes; and

a mixing portion that blends the first low-gradation image and the second low-gradation image in accordance with the ratio,

wherein the second generation portion performs the error diffusion processing by adding a screen noise to a predetermined region in the input image in accordance with the ratio, the screen noise having a pattern close to a pattern of a first screen that is used in the screen processing performed on the predetermined region by the first generation portion.

4. An image processing apparatus comprising:

a first generation portion that generates a first low-gradation image by performing a first process on an input image to reduce the number of gradations of the input image;

a second generation portion that generates a second low-gradation image by performing a second process on the input image to reduce the number of gradations of the input image;

a density detector that detects, as a density of the input image, for each pixel of the input image, any one of the following:

an average value of densities of pixels in a prescribed range centered on said each pixel;

a minimum value of the densities of the pixels in the prescribed range; and

a content of a black image obtained by performing binarization process on the pixels in the prescribed range;

a determination portion that determines, based on the density, a ratio at which the first low-gradation image and the second low-gradation image are blended together for said each pixel of the input image;

a mixing portion that blends the first low-gradation image and the second low-gradation image in accordance with the ratio of said each pixel of the input image.

5. The image processing apparatus according to claim 4 , wherein the density detector detects, as the density, any one of the average value and the minimum value in accordance with attributes of the input image.

6. A method for reducing a gradation level of an image, comprising:

a first step of generating a first low-gradation image by performing a screen processing on an input image to reduce the number of gradations of the input image;

a second step of generating a second low-gradation image by performing an error diffusion processing on the input image to reduce the number of gradations of the input image,

a third step of detecting a density of the input image;

a fourth step of determining, based on the density, a ratio at which the first low-gradation image and the second low-gradation image are blended together, wherein the ratio is determined in such a manner that the higher the density is, the higher the ratio becomes; and

a fifth step of blending the first low-gradation image and the second low-gradation image in accordance with the ratio,

wherein the second process is a process for adding a screen noise to a predetermined region in the input image in accordance with the ratio, the screen noise having a pattern close to a pattern of a first screen that is used in the first process on the predetermined region.

7. A method for reducing a gradation level of an image, comprising:

a first step of generating a first low-gradation image by performing a first process on an input image to reduce the number of gradations of the input image;

a second step of generating a second low-gradation image by performing a second process on the input image to reduce the number of gradations of the input image;

a third step of detecting a density of the input image;

a fourth step of determining, based on the density, a ratio at which the first low-gradation image and the second low-gradation image are blended together, wherein the ratio is determined in such a manner that the higher the frequency is, the higher the ratio becomes;

a fifth step of blending the first low-gradation image and the second low-gradation image in accordance with the ratio; and

a sixth step of detecting a frequency indicating how often a line constituted by a plurality of dots continuously disposed appears, or, indicating how often a line constituted by a plurality of dots regularly and intermittently disposed appears.

8. The method according to claim 7 , wherein

the first process is screen processing,

the second process is error diffusion processing, and

the fourth step includes determining the ratio in such a manner that the higher the density is, the higher the ratio becomes.

9. A method for reducing a gradation level of an image, comprising:

a first step of generating a first low-gradation image by performing a first process on an input image to reduce the number of gradations of the input image;

a second step of generating a second low-gradation image by performing a second process on the input image to reduce the number of gradations of the input image;

a third step of detecting as a density, for each pixel of the input image, any one of the following:

an average value of densities of pixels in a prescribed range centered on said each pixel;

a minimum value of the densities of the pixels in the prescribed range; and

a content of a black image obtained by performing binarization process on the pixels in the prescribed range;

a fourth step of determining, based on the density, a ratio at which the first low-gradation image and the second low-gradation image are blended together for said each pixel of the input image; and

a fifth step of blending the first low-gradation image and the second low-gradation image in accordance with the ratio of said each pixel of the input image.

10. The method according to claim 9 , wherein the third step includes detecting, as the density, any one of the average value and the minimum value in accordance with attributes of the input image.

Assignments (3)
MERGER Recorded Mar 5, 2014
From: KONICA MINOLTA BUSINESS TECHNOLOGIES, INC.
To: KONICA MINOLTA HOLDINGS, INC.
Reel/Frame 032388/0987 →
CHANGE OF NAME Recorded Mar 5, 2014
From: KONICA MINOLTA HOLDINGS, INC.
To: KONICA MINOLTA, INC.
Reel/Frame 032390/0651 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 18, 2011
From: SAKA, MASAAKI; YAMAGUCHI, TOMOHIRO
To: KONICA MINOLTA BUSINESS TECHNOLOGIES, INC.
Reel/Frame 026606/0837 →
Priority Claims (1)
JP 2010-161246 · Jul 16, 2010 · national
Continuity (1)
Related Publication 20120013950A1 · Jan 19, 2012