IP Library › Granted Patent US 9,854,223
Granted Patent B2
US 9,854,223 · App. 14/069,981 · Granted Dec 26, 2017

Stereoscopic moving picture generating apparatus and stereoscopic moving picture generating method

Inventor: Toshiro Ohbitsu (Akishima, JP)
Assignee: FUJITSU LIMITED
H04N13/0203H04N13/0022H04N2013/0081H04N2013/0092
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Quick Facts
Patent No.
US 9,854,223
App. No.
14/069,981
Granted
Dec 26, 2017
Kind
B2
Abstract

A stereoscopic picture generating apparatus comprising: a storage unit to get stored with a first image containing partial images and a second image containing partial images corresponding respectively to the partial images contained in the first image; and an arithmetic unit to extract a first position defined as an existing position of a first partial image contained in the first image and a second position defined as an existing position of a second partial image contained in the first image, to calculate a first differential quantity defined as a difference between the first position and the second position, to calculate a third position defined as a new existing position of a third partial image contained in the second image that corresponds to the first partial image based on the first differential quantity, and to generate a third image based on the third position of the third partial image.

Claims (48)

1. A stereoscopic picture generating apparatus comprising:

a memory configured to store a first image containing a plurality of partial images and a second image containing a plurality of partial images corresponding respectively to the plurality of partial images contained in the first image; and

a processor coupled to the memory, the processor configured to:

extract a first position defined as an existing position of a first partial image contained in the first image and a second position defined as an existing position of a second partial image contained in the second image, the second partial image corresponding to the first partial image;

calculate a first differential quantity defined as a difference between the first position and the second position;

generate a third image by translating the second image by the first difference quantity;

extract a third position defined as an existing position of a third partial image contained in the first image;

calculate a second differential quantity defined as a difference between the first position and the third position;

calculate a fourth position, defined as a new existing position of a fourth partial image, by translating the second image by the second differential quantity, the fourth partial image being contained in the third image, the fourth partial image corresponding to the third partial image;

generate a fourth image where the fourth partial image is located at the fourth position; and

generate a stereoscopic picture based on the first image and the fourth image.

2. The stereoscopic picture generating apparatus according to claim 1 , wherein the processor is configured to extract a fifth position defined as an existing position of a fifth partial image contained in the third image that corresponds to the first partial image, and calculate a third differential quantity defined as a difference between the first position and the fifth position, and

the processor is further configured to calculate a fourth position defined as a new existing position of the fourth partial image contained in the third image that corresponds to the first partial image on the basis of the first differential quantity and the third differential quantity.

3. The stereoscopic picture generating apparatus according to claim 1 , wherein the processor is configured to calculate a position of the first partial image in the depthwise direction, and

the processor is further configured to calculate the fourth position defined as the new existing position of the fourth partial image contained in the third image that corresponds to the first partial image on the basis of the first differential quantity and the position in the depthwise direction.

4. A stereoscopic picture generating method, the stereoscopic picture generating method being executed by a computer, the stereoscopic picture generating method comprising:

extracting a first position defined as an existing position of a first partial image contained in a first image and a second position defined as an existing position of a second partial image contained in a second image from a storage device to get stored with the first image containing a plurality of partial images and the second image containing a plurality of partial images corresponding respectively to the plurality of partial images contained in the first image, the second partial image corresponding to the first partial image;

calculating a first differential quantity defined as a difference between the first position and the second position;

generating a third image by translating the second image by the first difference quantity;

extracting a third position defined as an existing position of a third partial image contained in the first image;

calculating a second differential quantity defined as a difference between the first position and the third position;

calculating a fourth position, defined as a new existing position of a fourth partial image, by translating the second image by the second differential quantity, the fourth partial image being contained in the third image, the fourth partial image corresponding to the third partial image;

generating a fourth image where the fourth partial image is located at the fourth position; and

generating a stereoscopic picture based on the first image and the fourth image.

5. The stereoscopic picture generating method according to claim 4 , wherein the stereoscopic picture generating method further comprises:

extracting a fifth position defined as an existing position of a fifth partial image contained in the third image that corresponds to the first partial image, and calculating a third differential quantity defined as a difference between the first position and the fifth position; and

calculating a fourth position defined as a new existing position of the fourth partial image contained in the third image that corresponds to the first partial image on the basis of the first differential quantity and the third differential quantity.

6. The stereoscopic picture generating method according to claim 4 , wherein the stereoscopic picture generating method further comprises:

calculating a position of the first partial image in the depthwise direction; and

calculating the fourth position defined as the new existing position of the fourth partial image contained in the third image that corresponds to the first partial image on the basis of the first differential quantity and the position in the depthwise direction.

7. A non-transitory computer readable medium recorded with a stereoscopic picture generating program for making a computer execute:

extracting a first position defined as an existing position of a first partial image contained in a first image and a second position defined as an existing position of a second partial image contained in a second image from a storage device to get stored with the first image containing a plurality of partial images and the second image containing a plurality of partial images corresponding respectively to the plurality of partial images contained in the first image, the second partial image corresponding to the first partial image;

calculating a first differential quantity defined as a difference between the first position and the second position;

generating a third image by translating the second image by the first difference quantity;

extracting a third position defined as an existing position of a third partial image contained in the first image;

calculating a second differential quantity defined as a difference between the first position and the third position;

calculating a fourth position, defined as a new existing position of a fourth partial image, by translating the second image by the second differential quantity, the fourth partial image being contained in the third image, the fourth partial image corresponding to the third partial image;

generating a fourth image where the fourth partial image is located at the fourth position; and

generating a stereoscopic picture based on the first image and the fourth image.

8. The non-transitory computer readable medium recorded with the stereoscopic picture generating program according to claim 7 , further making the computer execute:

extracting a fifth position defined as an existing position of a fifth partial image contained in the third image that corresponds to the first partial image, and calculating a third differential quantity defined as a difference between the first position and the fifth position; and

calculating a fourth position defined as a new existing position of the fourth partial image contained in the third image that corresponds to the first partial image on the basis of the first differential quantity and the third differential quantity.

9. The non-transitory computer readable medium recorded with the stereoscopic picture generating program according to claim 7 , further making the computer execute:

calculating a position of the first partial image in the depthwise direction; and

calculating the fourth position defined as the new existing position of the fourth partial image contained in the third image that corresponds to the first partial image on the basis of the first differential quantity and the position in the depthwise direction.

10. The stereoscopic picture generating apparatus according to claim 1 , wherein the second differential quantity is determined to be a limit value of a parallax quantity when the calculated second differential quantity exceeds the limit value of the parallax quantity, wherein a person can recognize that a object on the first partial image and an object on the fourth partial image are the same object when the second differential quantity is lower than the limit value of the parallax quantity.

11. The stereoscopic picture generating method according to claim 4 , wherein the second differential quantity is determined to be a limit value of a parallax quantity when the calculated second differential quantity exceeds the limit value of the parallax quantity, wherein a person can recognize that a object on the first partial image and an object on the fourth partial image are the same object when the second differential quantity is lower than the limit value of the parallax quantity.

12. The non-transitory computer readable medium recorded with the stereoscopic picture generating program according to claim 7 , wherein the second differential quantity is determined to be a limit value of a parallax quantity when the calculated second differential quantity exceeds the limit value of the parallax quantity, wherein a person can recognize that a object on the first partial image and an object on the fourth partial image are the same object when the second differential quantity is lower than the limit value of the parallax quantity.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 31, 2019
From: FUJITSU LIMITED
To: FUJITSU CLIENT COMPUTING LIMITED
Reel/Frame 048751/0051 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 26, 2013
From: OHBITSU, TOSHIRO
To: FUJITSU LIMITED
Reel/Frame 031676/0579 →
Continuity (2)
Continuation PCTJP2011060604 · May 6, 2011
Related Publication 20140063195A1 · Mar 6, 2014