IP Library Granted Patent US 10,321,017
Granted Patent B2
US 10,321,017 · App. 15/576,631 · Granted Jun 11, 2019

Image processing apparatus for improving image sharpness according to the output condition, image processing method and program

Inventors: Naoya Takesue (Tokyo, JP); Hisashi Ishikawa (Urayasu, JP); Tomokazu Yanai (Yokohama, JP); Hiroyuki Sakai (Chigasaki, JP); Yoshinori Nakajima (Yokohama, JP); Hajime Nagai (Kawasaki, JP); Yumi Shimokodachi (Kawasaki, JP)
Assignee: Canon Kabushiki Kaisha
H04N1/4092G06T5/003G06T5/10G06T5/20H04N1/52G06T2207/20056
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 10,321,017
App. No.
15/576,631
Granted
Jun 11, 2019
Kind
B2
Abstract

An image processing apparatus according to the present invention includes an acquisition unit configured to acquire an output condition when an image forming apparatus forms an image on a recording medium based on image data, and a processing unit configured to perform image processing on the image data for improving sharpness of the image by using a parameter based on the output condition. The parameter to be referred to by the processing unit represents such a characteristic that the image formed by the image forming apparatus has a luminous characteristic in relation to spatial frequency that remains constant or decreases continuously without causing any inflection point or any discontinuous point in a frequency band from a predetermined frequency to a limit frequency of the image forming apparatus.

Claims (24)

1. An image processing apparatus, comprising:

an acquisition unit configured to acquire an output condition when an image forming apparatus forms an image on a recording medium based on image data; and

a processing unit configured to perform image processing on the image data for improving sharpness of the image by using a parameter based on the output condition,

wherein the parameter represents such a characteristic that the image formed by the image forming apparatus has a luminous characteristic in relation to spatial frequency that remains constant or decreases continuously without causing any inflection point or any discontinuous point in a frequency band from a predetermined frequency to a limit frequency of the image forming apparatus.

2. The image processing apparatus according to claim 1 , wherein the pre-determined frequency is a spatial frequency at which recognizing the sharpness of the image is difficult.

3. The image processing apparatus according to claim 1 , wherein the parameter is a coefficient for a filter and the image processing is convolution processing of the filter.

4. The image processing apparatus according to claim 1 , wherein the parameter is a frequency characteristic and the image processing is processing for calculating a product for the filter in a frequency space.

5. An image processing apparatus, comprising:

an acquisition unit configured to acquire an output condition when an image forming apparatus forms an image on a recording medium based on image data; and

a processing unit configured to perform image processing on the image data for improving sharpness of the image by using a parameter based on the output condition,

wherein the parameter represents such a characteristic that degree of improvement in sharpness is enhanced in a specific frequency range lower than a predetermined frequency, in spatial frequencies of the formed image, in which contribution to visibility is sufficiently smaller, and that the degree of improvement in the sharpness remains constant or decreases continuously without causing any inflection point or any discontinuous point in a frequency band higher than the predetermined frequency and reaching a limit frequency of the image forming apparatus.

6. The image processing apparatus according to claim 5 , wherein the frequency characteristic of the parameter changes substantially linearly in the frequency band higher than the predetermined frequency and reaching the limit frequency of the image forming apparatus.

7. The image processing apparatus according to claim 6 , wherein the frequency characteristic of the parameter remains constant, with respect to an amplitude gain at the predetermined frequency, in the frequency band higher than the predetermined frequency and reaching the limit frequency of the image forming apparatus.

8. The image processing apparatus according to claim 6 , wherein the frequency characteristic of the parameter is determined in such a manner that luminance at the limit frequency of the image forming apparatus becomes substantially the same as luminance at the predetermined frequency.

9. The image processing apparatus according to claim 2 , wherein the frequency characteristic of the parameter is determined in such a manner that a difference in luminance before and after recovery processing at the limit frequency of the image forming apparatus becomes substantially to the same as a difference in luminance at the predetermined frequency.

10. An image processing method, comprising:

acquiring an output condition when an image forming apparatus forms an image on a recording medium based on image data, and performing image processing on the image data for improving sharpness of the image by using a parameter based on the output condition,

wherein the parameter represents such a characteristic that the image formed by the image forming apparatus has a luminous characteristic in relation to a spatial frequency that remains constant or decreases continuously without causing any inflection point or any discontinuous point in a frequency band from a predetermined frequency to a limit frequency of the image forming apparatus.

11. An image processing method, comprising:

acquiring an output condition when an image forming apparatus forms an image on a recording medium based on image data, and performing image processing on the image data for improving sharpness of the image by using a parameter based on the output condition,

wherein the parameter represents such a characteristic that the degree of improvement in sharpness is enhanced in a specific frequency range lower than a predetermined frequency, in spatial frequencies of the formed image, in which contribution to visibility is sufficiently small, and that the degree of improvement in the sharpness remains constant or decreases continuously without causing any inflection point or any discontinuous point in a frequency band higher than the predetermined frequency and reaching a limit frequency of the image forming apparatus.

12. A computer-readable non-transitory recording medium storing a program that causes a computer to perform image processing method, the method comprising:

acquiring an output condition when an image forming apparatus forms an image on a recording medium based on image data, and performing image processing on the image data for improving sharpness of the image by using a parameter based on the output condition for improving sharpness of the image,

wherein the parameter represents such a characteristic that a degree of improvement in sharpness is enhanced in a specific frequency range lower than a predetermined frequency, in spatial frequencies of the formed image, in which contribution to visibility is sufficiently small, and that the degree of improvement in the sharpness remains constant or decreases continuously without causing any inflection point or any discontinuous point in a frequency band higher than the predetermined frequency and reaching a limit frequency of the image forming apparatus.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 6, 2018
From: TAKESUE, NAOYA; ISHIKAWA, HISASHI; YANAI, TOMOKAZU; SAKAI, HIROYUKI; NAKAJIMA, YOSHINORI; NAGAI, HAJIME; SHIMOKODACHI, YUMI
To: CANON KABUSHIKI KAISHA
Reel/Frame 044849/0040 →
Priority Claims (1)
JP 2015-110217 · May 29, 2015 · national
Continuity (1)
Related Publication 20180160012A1 · Jun 7, 2018