IP Library › Granted Patent US 11,868,532
Granted Patent B2
US 11,868,532 · App. 17/597,353 · Granted Jan 9, 2024

Shape changeable apparatus, shape control method, and tactile sense providing apparatus

Inventors: Kentaro Yoshida (Tokyo, JP); Masahiro Sato (Tokyo, JP)
Assignee: SONY GROUP CORPORATION
G06F3/016H03K17/968G06F2203/04102H03K2217/96062
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Quick Facts
Patent No.
US 11,868,532
App. No.
17/597,353
Granted
Jan 9, 2024
Kind
B2
Abstract

A shape changeable apparatus according to an embodiment of the present technology includes a space forming section, a fluid controller, a signal emitter, a detector, and a generator. The space forming section forms a space, and includes a deformable member that is arranged in contact with the space. The fluid controller is capable of deforming the member by controlling a flow of fluid with respect to the space. The signal emitter emits a signal into the space. The detector is arranged out of contact with the member within the space, and detects the emitted signal. The generator generates information regarding the deformation of the member on the basis of a result of the detection performed by the detector.

Claims (66)

1. A shape changeable apparatus, comprising:

a space forming section configured to form a space, wherein the space forming section includes a deformable member that is in contact with the space;

a fluid controller configured to deform the deformable member based on a control of a flow of fluid with respect to the space;

a signal emitter configured to emit a signal into the space;

a detector configured to detect the emitted signal, wherein the detector is within the space and out of contact with the deformable member; and

a generator configured to generate information regarding the deformation of the deformable member based on a result of detection by the detector, wherein the information regarding the deformation of the deformable member is generated based on a specified learning algorithm.

2. The shape changeable apparatus according to claim 1 , wherein

the information regarding the deformation of the deformable member includes at least one of information regarding a shape of the deformable member, or information regarding a contact state of an object in contact with the deformable member.

3. The shape changeable apparatus according to claim 1 , wherein

the deformable member is in a form of a film,

the deformable member includes an inner surface on a side of the space and an outer surface on a side of an external space,

the inner surface is configured to reflect the signal, and

the information regarding the deformation of the deformable member includes at least one of information regarding a shape of the outer surface, or information regarding a contact state of an object in contact with the outer surface.

4. The shape changeable apparatus according to claim 1 , wherein

the signal emitter is within the space.

5. The shape changeable apparatus according to claim 1 , wherein

the fluid controller is further configured to control the flow of the fluid to provide a specified tactile sense to a user in contact with the deformable member, and

the specified tactile sense is provided based on the deformation of the deformable member.

6. The shape changeable apparatus according to claim 5 , wherein

the fluid controller is further configured to control the flow of the fluid based on the information regarding the deformation of the deformable member.

7. The shape changeable apparatus according to claim 1 , wherein the fluid is air.

8. The shape changeable apparatus according to claim 1 , wherein

the signal emitter is further configured to emit, as the signal, at least one of light, a radio wave, or sound, and

the detector is further configured to detect at least one of the emitted light, the emitted radio wave, or the emitted sound.

9. The shape changeable apparatus according to claim 1 , wherein

the signal emitter is further configured to temporally change an intensity of the signal.

10. The shape changeable apparatus according to claim 1 , wherein

the signal emitter includes at least one signal source configured to emit the signal,

the detector includes at least one sensor configured to detect the emitted signal, and

the generator is further configured to generate the information regarding the deformation of the deformable member based on a basis of a result of detection performed by the at least one sensor.

11. The shape changeable apparatus according to claim 10 , wherein a number of the at least one signal source is larger than a number of the at least one sensor.

12. The shape changeable apparatus according to claim 10 , wherein a number of the at least one signal source is smaller than a number of the at least one sensor.

13. The shape changeable apparatus according to claim 10 , wherein

at least one of a condition in which the at least one signal source includes a plurality of the signal sources, or a condition in which the at least one sensor includes a plurality of the sensors is satisfied, and

a distance between the at least one signal source and the at least one sensor is not constant.

14. The shape changeable apparatus according to claim 1 , wherein

the signal emitter is further configured to emit the signal toward the deformable member,

the detector is further configured to detect the signal reflected off the deformable member, and

the shape changeable apparatus further comprises a blocking portion between the signal emitter and the detector.

15. The shape changeable apparatus according to claim 1 , wherein the signal emitter is further configured to emit invisible light as the signal.

16. The shape changeable apparatus according to claim 1 , wherein

the signal emitter is further configured to emit light as the signal,

the detector is further configured to detect the emitted light, and

the shape changeable apparatus further comprises a filter portion configured to define a wavelength of the light detected by the detector.

17. The shape changeable apparatus according to claim 1 , further comprising:

a tactile sense providing section configured to control at least one of a degree of hardness of the deformable member or a temperature of the deformable member based on the information regarding the deformation of the deformable member.

18. A shape control method, comprising:

deforming a deformable member by controlling a flow of fluid with respect to a space, wherein

a space forming section is configured to form the space,

the space forming section includes the deformable member, and

the space is in contact with the deformable member;

emitting a signal into the space;

detecting the signal by a detector, wherein the detector is within the space and out of contact with the deformable member; and

generating information regarding the deformation of the deformable member based on a result of detection by the detector, wherein the information regarding the deformation of the deformable member is generated based on a specified learning algorithm.

19. A tactile sense providing apparatus, comprising:

a space forming section configured to form a space, wherein the space forming section includes a deformable member that is in contact with the space;

a fluid controller configured to of deform the deformable member based on a control of a flow of fluid with respect to the space, wherein a specified tactile sense is provided to a user in contact with the deformable member based on the deformation of the deformable member;

a signal emitter configured to emit a signal into the space;

a detector configured to detect the emitted signal, wherein the detector is within the space and out of contact with the deformable member; and

a generator configured to generate information regarding the deformation of the deformable member based on a basis of a result of detection performed by the detector, wherein the information regarding the deformation of the deformable member is generated based on a specified learning algorithm.

20. A shape changeable apparatus, comprising:

a space forming section configured to form a space, wherein the space forming section includes a deformable member that is in contact with the space;

a fluid controller configured to of deform the deformable member based on a control of a flow of fluid with respect to the space;

a signal emitter configured to emit a signal into the space and temporally change an intensity of the signal;

a detector configured to detect the emitted signal, wherein the detector is within the space and out of contact with the deformable member; and

a generator configured to generate information regarding the deformation of the deformable member based on a result of detection by the detector, wherein the information regarding the deformation of the deformable member is generated based on a specified learning algorithm.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 4, 2022
From: YOSHIDA, KENTARO; SATO, MASAHIRO
To: SONY GROUP CORPORATION
Reel/Frame 058540/0346 →
Priority Claims (1)
JP 2019-132925 · Jul 18, 2019 · national
Continuity (1)
Related Publication 20220269348A1 · Aug 25, 2022
Cited By (1)
US 12,504,823