IP Library Granted Patent US 11,531,389
Granted Patent B1
US 11,531,389 · App. 17/162,236 · Granted Dec 20, 2022

Systems and methods for electric discharge-based sensing via wearables donned by users of artificial reality systems

Inventors: Eric Whitmire (Seattle, WA); Wolf Kienzle (Seattle, WA); David R Perek (Bothell, WA); Hrvoje Benko (Seattle, WA)
Assignee: Meta Platforms Technologies, LLC
G06F3/011G06F3/014H02J7/00H02J50/10
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 11,531,389
App. No.
17/162,236
Granted
Dec 20, 2022
Kind
B1
Abstract

A system may include a wearable dimensioned to be donned by a user of an artificial reality system. The system may also include an energy measuring device incorporated into the wearable. The energy measuring device may measure an electrical energy differential between a body of the user and a surface. The system may further include at least one processing device communicatively coupled to the energy measuring device. The processing device may detect, based at least in part on the electrical energy differential measured by the energy measuring device, an interaction between the user and the surface. In response to this detection, the processing device may generate an input command for the artificial reality system based at least in part on the interaction detected between the user and the surface. Various other systems and methods are also disclosed.

Claims (76)

1. A system comprising:

a wearable dimensioned to be donned by a user of an artificial reality system;

an energy measuring device incorporated into the wearable, wherein the energy measuring device measures an amount of electrostatic discharge produced by the user touching or releasing a surface of an object capable of conducting an electric charge;

at least one processing device communicatively coupled to the energy measuring device, wherein the processing device:

detects, based at least in part on the amount of electrostatic discharge measured by the energy measuring device, an interaction between the user and the surface of the object; and

in response to detecting the interaction between the user and the surface of the object, generates an input command for the artificial reality system based at least in part on the interaction detected between the user and the surface.

2. The system of claim 1 , wherein:

the energy measuring device comprises an electrometer that:

electrically grounds to a body of the user; and

measures the amount of electrostatic discharge produced by the user touching or releasing the surface of the object; and

the processing device detects the interaction between the user and the surface based at least in part on the amount of electrostatic discharge measured by the electrometer.

3. The system of claim 2 , further comprising:

a body-charging device that charges the body of the user relative to the surface of the object; and

wherein:

the amount of electrostatic discharge measured by the electrometer comprises an electric charge transferred from the body of the user to the surface of the object when the user touches the surface with a body part; and

the interaction between the user and the surface of the object comprises the touching of the surface by the body part of the user.

4. The system of claim 3 , wherein the body-charging device comprises:

a grounding electrode that establishes an electrical reference to the surface; and

a charging electrode that electrically couples an output of the body-charging device to the body of the user.

5. The system of claim 3 , wherein the processing device:

analyzes the electric charge transfer measured by the electrometer; and

determines that the user has touched the surface based at least in part on the analysis of the electric charge transfer measured by the electrometer.

6. The system of claim 1 , wherein:

the electrostatic discharge comprises an amount of electric current flowing from the surface of the object to a body of the user;

the energy measuring device comprises a current monitor that measures the amount of electric current flowing from the surface to the body of the user via a skin-touching electrode that electrically couples to the body of the user; and

the processing device detects the interaction between the user and the surface based at least in part on the amount of electric current flowing from the surface to the body of the user.

7. The system of claim 6 , further comprising:

a surface-charging device incorporated into the wearable, wherein the surface-charging device charges the surface of the object via a surface-charging electrode that electrically couples the surface-charging device to the surface; and

wherein the interaction between the user and the surface of the object comprises a touching of the surface by a body part of the user.

8. The system of claim 7 , wherein the processing device:

analyzes the amount of electric current measured by the current monitor; and

determines that the user has touched the surface based at least in part on the analysis of the electric current measured by the current monitor.

9. The system of claim 1 , wherein the processing device:

analyzes the amount of electrostatic discharge measured by the energy measuring device via a machine learning model;

detects, within the electrostatic discharge via the machine learning model, a pattern indicative of the user touching the surface; and

determines, based at least in part on the pattern detected within the electrostatic discharge via the machine learning model, that the user has touched the surface.

10. The system of claim 1 , wherein the input command generated by the processing device facilitates modifying at least one virtual component of the artificial reality system to account for the interaction detected between the user and the surface.

11. The system of claim 1 , wherein the interaction between the user and the surface of the object comprises at least one of:

a touching of a body part of the user to the surface; or

a releasing of a body part of the user from the surface.

12. A wearable comprising:

a fastener dimensioned to facilitate securing the wearable to a user of an artificial reality system;

an energy measuring device that measures an amount of electrostatic discharge produced by the user touching or releasing a surface of an object capable of conducting an electric charge;

at least one processing device communicatively coupled to the energy measuring device, wherein the processing device:

detects, based at least in part on the amount of electrostatic discharge measured by the energy measuring device, an interaction between the user and the surface of the object; and

in response to detecting the interaction between the user and the surface of the object, generates an input command for the artificial reality system based at least in part on the interaction detected between the user and the surface.

13. The wearable of claim 12 , wherein:

the energy measuring device comprises an electrometer that:

electrically grounds to a body of the user; and

measures the amount of electrostatic discharge produced by the user touching or releasing the surface of the object; and

the processing device detects the interaction between the user and the surface based at least in part on the amount of electrostatic discharge measured by the electrometer.

14. The wearable of claim 13 , further comprising:

a body-charging device that charges the body of the user relative to the surface of the object; and

wherein:

the amount of electrostatic discharge measured by the electrometer comprises an electric charge transferred from the body of the user to the surface of the object when the user touches the surface with a body part; and

the interaction between the user and the surface of the object comprises the touching of the surface by the body part of the user.

15. The wearable of claim 14 , wherein the body-charging device comprises:

a grounding electrode that establishes an electrical reference to the surface; and

a charging electrode that electrically couples an output of the body-charging device to the body of the user.

16. The wearable of claim 14 , wherein the processing device:

analyzes the electric charge transfer measured by the electrometer; and

determines that the user has touched the surface based at least in part on the analysis of the electric charge transfer measured by the electrometer.

17. The wearable of claim 12 , wherein:

the electrostatic discharge comprises an amount of electric current flowing from the surface of the object to a body of the user;

the energy measuring device comprises a current monitor that measures the amount of electric current flowing from the surface to the body of the user via a skin-touching electrode that electrically couples to the body of the user; and

the processing device detects the interaction between the user and the surface based at least in part on the amount of electric current flowing from the surface to the body of the user.

18. The wearable of claim 17 , further comprising:

a surface-charging device incorporated into the wearable, wherein the surface-charging device charges the surface of the object via a surface-charging electrode that electrically couples the surface-charging device to the surface; and

wherein the interaction between the user and the surface of the object comprises a touching of the surface by a body part of the user.

19. The wearable of claim 18 , wherein the processing device:

analyzes the amount of electric current measured by the current monitor; and

determines that the user has touched the surface based at least in part on the analysis of the electric current measured by the current monitor.

20. A method comprising:

measuring, by an energy measuring device incorporated into a wearable donned by a user of an artificial reality system, an amount of electrostatic discharge produced by the user touching or releasing a surface of an object capable of conducting an electric charge;

detecting, by a processing device communicatively coupled to the energy measuring device, an interaction between the user and the surface of the object based at least in part on the amount of electrostatic discharge measured by the energy measuring device; and

generating, by the processing device, an input command for the artificial reality system based at least in part on the interaction detected between the user and the surface of the object in response to detecting the interaction between the user and the surface.

Assignments (2)
CHANGE OF NAME Recorded May 27, 2022
From: FACEBOOK TECHNOLOGIES, LLC
To: META PLATFORMS TECHNOLOGIES, LLC
Reel/Frame 060203/0228 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 29, 2021
From: WHITMIRE, ERIC MICHAEL; KIENZLE, WOLF; PEREK, DAVID R.; BENKO, HRVOJE
To: FACEBOOK TECHNOLOGIES, LLC
Reel/Frame 055755/0522 →
Cited By (1)
US 12,608,086