IP Library › Granted Patent US 11,350,065
Granted Patent B2
US 11,350,065 · App. 17/049,652 · Granted May 31, 2022

Video generation device, video generation method, and program

Inventor: Takahiro Kawabe (Tokyo, JP)
Assignee: NIPPON TELEGRAPH AND TELEPHONE CORPORATION
H04N9/3185G03B21/147G03B25/00H04N9/3182H04N9/74
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Quick Facts
Patent No.
US 11,350,065
App. No.
17/049,652
Granted
May 31, 2022
Kind
B2
Abstract

Using different deformation maps that have elements corresponding to respective pixels deriving from an original image and have low-spatial frequency components, the elements indicating a moving direction and a moving amount of the corresponding pixels, the pixels deriving from the original image are moved in a moving direction by a moving amount, the moving direction and the moving amount being specified by the elements corresponding to the respective pixels, and modulated images are obtained. The modulated images are separated into brightness components and color components to obtain brightness component images and color component images, brightness of brightness component images and/or color of color component images is modulated to obtain brightness-modulated image and/or color-modulated image, and a video is obtained, the video being configured by arranging integrated images obtained by integrating the obtained brightness-modulated images and/or color-modulated images.

Claims (44)

1. A video generating device comprising processing circuitry configured to implement processing of:

a distortion modulating unit that, using a plurality of different deformation maps that have elements corresponding to respective pixels deriving from an original image and have low-spatial frequency components, the elements indicating a moving direction and a moving amount of the corresponding pixels, moves the pixels deriving from the original image in a moving direction by a moving amount, the moving direction and the moving amount being specified by the elements corresponding to the respective pixels, to obtain a plurality of modulated images;

a separating unit that separates the plurality of modulated images into brightness components and color components to obtain a plurality of brightness component images and color component images;

a modulating unit that obtains a plurality of color-modulated images obtained by modulating color of the plurality of color component images in accordance with color modulation information; and

an integrating unit that obtains a video configured by temporally arranging a plurality of integrated images obtained by integrating the brightness component images and the color-modulated images.

2. A video generating device comprising circuitry configured to implement processing of:

a distortion modulating unit that, using a plurality of different deformation maps that have elements corresponding to respective pixels deriving from an original image and have low-spatial frequency components, the elements indicating a moving direction and a moving amount of the corresponding pixels, moves the pixels deriving from the original image in a moving direction by a moving amount, the moving direction and the moving amount being specified by the elements corresponding to the respective pixels, to obtain a plurality of modulated images;

a separating unit that separates the plurality of modulated images into brightness components and color components to obtain a plurality of brightness component images and color component images;

a modulating unit that obtains a plurality of brightness-modulated images obtained by modulating brightness of the plurality of brightness component images in accordance with brightness modulation information; and

an integrating unit that obtains a video configured by temporally arranging a plurality of integrated images obtained by integrating the brightness-modulated images and the color component images.

3. A video generating device comprising circuitry configured to implement processing of:

a distortion modulating unit that, using a plurality of different deformation maps that have elements corresponding to respective pixels deriving from an original image and have low-spatial frequency components, the elements indicating a moving direction and a moving amount of the corresponding pixels, moves the pixels deriving from the original image in a moving direction by a moving amount, the moving direction and the moving amount being specified by the elements corresponding to the respective pixels, to obtain a plurality of modulated images;

a separating unit that separates the plurality of modulated images into brightness components and color components to obtain a plurality of brightness component images and color component images;

a modulating unit that obtains a plurality of brightness-modulated images obtained by modulating brightness of the plurality of brightness component images in accordance with brightness modulation information, and obtains a plurality of color-modulated images obtained by modulating color of the plurality of color component images in accordance with color modulation information; and

an integrating unit that obtains a video configured by temporally arranging a plurality of integrated images obtained by integrating the brightness-modulated images and the color-modulated images.

4. The video generating device according to claim 1 ,

further comprising a deformation map generating unit that generates the deformation maps, wherein

the plurality of different deformation maps indicate the moving direction and the moving amount of the pixels in a plurality of deformation regions,

the plurality of deformation regions are obtained by deforming an outline of an original deformation region included in the original image, using a plurality of different second deformation maps having low-spatial frequency components, and the plurality of deformation regions have different outlines, and

the deformation map generating unit modulates at least one of absolute values of spatial frequency components of the second deformation maps and an amplitude of the second deformation maps, in accordance with viscosity modulation information.

5. The video generating device according to claim 1 ,

further comprising a deformation map generating unit that generates the deformation maps, wherein

the plurality of different deformation maps indicate the moving direction and the moving amount of the pixels in a plurality of deformation regions, and

the deformation map generating unit modulates sharpness of outlines of the plurality of deformation regions in accordance with viscosity modulation information.

6. The video generating device according to any of claims 1 to 3 , wherein

the deformation maps indicate a moving direction and a moving amount of the pixels belonging to a deformation region, and

the modulating unit modulates color of the deformation region, or of the deformation region and a region around the deformation region, in the plurality of color component images to obtain the plurality of color-modulated images, and/or modulates brightness of the deformation region, or of the deformation region and the region around the deformation region, in the plurality of brightness component images to obtain the plurality of brightness-modulated images.

7. The video generating device according to claim 6 , wherein the region around the deformation region is a region at an angle of view relative to the deformation region that is 0.12 degrees or less.

8. A video generating method for a video generating device, the method comprising:

a distortion modulating step of, using a plurality of different deformation maps that have elements corresponding to respective pixels deriving from an original image and have low-spatial frequency components, the elements indicating a moving direction and a moving amount of the corresponding pixels, moving the pixels deriving from the original image in a moving direction by a moving amount, the moving direction and the moving amount being specified by the elements corresponding to the respective pixels, to obtain a plurality of modulated images;

a separating step of separating the plurality of modulated images into brightness components and color components to obtain a plurality of brightness component images and color component images;

a modulating step of obtaining a plurality of color-modulated images obtained by modulating color of the plurality of color component images in accordance with color modulation information; and

an integrating step of obtaining a video configured by temporally arranging a plurality of integrated images obtained by integrating the brightness component images and the color-modulated images.

9. A video generating method for a video generating device, the method comprising:

a distortion modulating step of, using a plurality of different deformation maps that have elements corresponding to respective pixels deriving from an original image and have low-spatial frequency components, the elements indicating a moving direction and a moving amount of the corresponding pixels, moving the pixels deriving from the original image in a moving direction by a moving amount, the moving direction and the moving amount being specified by the elements corresponding to the respective pixels, to obtain a plurality of modulated images;

a separating step of separating the plurality of modulated images into brightness components and color components to obtain a plurality of brightness component images and color component images;

a modulating step of obtaining a plurality of brightness-modulated images obtained by modulating brightness of the plurality of brightness component images in accordance with brightness modulation information; and

an integrating step of obtaining a video configured by temporally arranging a plurality of integrated images obtained by integrating the brightness-modulated images and the color component images.

10. A video generating method for a video generating device, the method comprising:

a distortion modulating step of, using a plurality of different deformation maps that have elements corresponding to respective pixels deriving from an original image and have low-spatial frequency components, the elements indicating a moving direction and a moving amount of the corresponding pixels, moving the pixels deriving from the original image in a moving direction by a moving amount, the moving direction and the moving amount being specified by the elements corresponding to the respective pixels, to obtain a plurality of modulated images;

a separating step of separating the plurality of modulated images into brightness components and color components to obtain a plurality of brightness component images and color component images;

a modulating step of obtaining a plurality of brightness-modulated images obtained by modulating brightness of the plurality of brightness component images in accordance with brightness modulation information, and obtaining a plurality of color-modulated images obtained by modulating color of the plurality of color component images in accordance with color modulation information; and

an integrating step of obtaining a video configured by temporally arranging a plurality of integrated images obtained by integrating the brightness-modulated images and the color-modulated images.

11. A non-transitory computer-readable recording medium storing a program for causing a computer to function as the video generating device according to any of claims 1 to 3 .

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 22, 2020
From: KAWABE, TAKAHIRO
To: NIPPON TELEGRAPH AND TELEPHONE CORPORATION
Reel/Frame 054136/0308 →
Priority Claims (1)
JP JP2018-083179 · Apr 24, 2018 · national
Continuity (1)
Related Publication 20210258547A1 · Aug 19, 2021