IP Library › Granted Patent US 10,210,670
Granted Patent B2
US 10,210,670 · App. 15/518,142 · Granted Feb 19, 2019

Head-mounted display device, method of controlling head-mounted display device, and computer program

Inventor: Akio Yamazaki (Shiojiri, JP)
Assignee: SEIKO EPSON CORPORATION
G06T19/20G02B27/0172G06T19/006G09G3/002G02B2027/014G02B2027/0112G02B2027/0138G02B2027/0178G06T2219/2012
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Quick Facts
Patent No.
US 10,210,670
App. No.
15/518,142
Granted
Feb 19, 2019
Kind
B2
Abstract

A head-mounted display device with which a user can visually recognize a virtual image and an outside scene includes an image display unit configured to cause the user to visually recognize the virtual image, an augmented-reality processing unit configured to cause the image display unit to form the virtual image including a virtual object, at least a part of which is superimposed and displayed on a real object present in the real world, a color detecting unit configured to detect a real object color, which is a color of the real object, and a color adjusting unit configured to bring a visual observation color, which is a color obtained by superimposing a color of the virtual object on the real object color, close to a target color using the detected real object color.

Claims (30)

1. A head-mounted display device with which a user can visually recognize a virtual image and an outside scene, the head-mounted display device comprising:

an image display unit configured to cause the user to visually recognize the virtual image;

an augmented-reality processing unit configured to cause the image display unit to form the virtual image including a virtual object, at least a part of which is superimposed and displayed on a real object present in a real world;

a color detecting unit configured to detect a real object color, which is a color of the real object; and

a color adjusting unit configured to bring a visual observation color, which is a color obtained by superimposing a color of the virtual object on the real object color, close to a target color using the detected real object color, wherein

the color adjusting unit brings the visual observation color close to the target color by adjusting the color of the virtual object to bring a color obtained by additive color mixing of the detected real object color and the color of the virtual object close to the target color,

when chroma of the detected real object color is greater than or equal to predetermined chroma, the color adjusting unit causes the image display unit to change the transmittance of the outside scene, and

when the chroma of the detected real object color is less than the predetermined chroma, the color adjusting unit adjusts the color of the virtual object to bring the color obtained by the additive color mixing of the detected real object color and the color of the virtual object close to the target color.

2. The head-mounted display device according to claim 1 , wherein

the image display unit is further capable of changing transmittance of the outside scene for each pixel, and

the color adjusting unit brings the visual observation color close to the target color by causing the image display unit to change the transmittance of the outside scene.

3. The head-mounted display device according to claim 1 , wherein the color adjusting unit executes, for each pixel of the virtual object, processing for bringing the visual observation color close to the target color.

4. The head-mounted display device according to claim 1 , wherein the color adjusting unit executes, for each n*m (n and m are integers equal to or larger than 2) pixel block, which is a collection of a plurality of pixels in a vicinity among pixels of the virtual object, processing for bringing the visual observation color close to the target color.

5. The head-mounted display device according to claim 1 , wherein the color adjusting unit determines the target color on the basis of a real light environment in which the real object is placed.

6. The head-mounted display device according to claim 1 , wherein the color adjusting unit further changes the visual observation color by converting the color of the virtual object taking into account a virtual light environment.

7. The head-mounted display device according to claim 1 , wherein the color detecting unit is a camera that acquires an outside scene image representing the outside scene.

8. A method of controlling a head-mounted display device with which a user can visually recognize a virtual image and an outside scene, the method comprising:

causing the head-mounted display device to form a virtual image including a virtual object, at least a part of which is superimposed and displayed on a real object present in a real world;

detecting a real object color, which is a color of the real object; and

bringing a visual observation color, which is a color obtained by superimposing a color of the virtual object on the real object color, close to a target color using the detected real object color;

bringing the visual observation color close to the target color by adjusting the color of the virtual object to bring a color obtained by additive color mixing of the detected real object color and the color of the virtual object close to the target color;

when chroma of the detected real object color is greater than or equal to predetermined chroma, causing the head-mounted display device to change the transmittance of the outside scene; and

when the chroma of the detected real object color is less than the predetermined chroma, adjusting the color of the virtual object to bring the color obtained by the additive color mixing of the detected real object color and the color of the virtual object close to the target color.

9. A non-transitory computer-readable medium having a program stored thereon, the program for controlling a head-mounted display device with which a user can visually recognize a virtual image and an outside scene, and the program causing a computer to execute:

a function of causing the head-mounted display device to form a virtual image including a virtual object, at least a part of which is superimposed and displayed on a real object present in a real world;

a function of detecting a real object color, which is a color of the real object;

a function of bringing a visual observation color, which is a color obtained by superimposing a color of the virtual object on the real object color, close to a target color using the detected real object color;

a function of bringing the visual observation color close to the target color by adjusting the color of the virtual object to bring a color obtained by additive color mixing of the detected real object color and the color of the virtual object close to the target color;

when chroma of the detected real object color is greater than or equal to predetermined chroma, a function of causing the head-mounted display device to change the transmittance of the outside scene; and

when the chroma of the detected real object color is less than the predetermined chroma, a function of adjusting the color of the virtual object to bring the color obtained by the additive color mixing of the detected real object color and the color of the virtual object close to the target color.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 10, 2017
From: YAMAZAKI, AKIO
To: SEIKO EPSON CORPORATION
Reel/Frame 041942/0544 →
Priority Claims (2)
JP 2014-210455 · Oct 15, 2014 · national
JP 2015-099841 · May 15, 2015 · national
Continuity (1)
Related Publication 20170243406A1 · Aug 24, 2017