IP Library Granted Patent US 9,869,996
Granted Patent B2
US 9,869,996 · App. 14/592,289 · Granted Jan 16, 2018

System and method for using an internet of things network for managing factory production

Inventors: Depti Patel (Agoura Hills, CA); Robert J. Rencher (Normandy Park, WA); Luis A. Vinuelas (Scottsdale, AZ); Roland N. Freeman (Bremerton, WA); David W. Nelson (Maple Valley, WA)
Assignee: THE BOEING COMPANY
G05B19/41875G06Q10/06G05B2219/32368G05B2219/45067
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Quick Facts
Patent No.
US 9,869,996
App. No.
14/592,289
Granted
Jan 16, 2018
Kind
B2
Abstract

An Internet of things (IoT) network for managing assembly of a multi-part product in a production environment. A user wears a device that provides a hands-free display of assembly instructions while the user is assembling the product. The user also wears sensors for transmitting data about the user's location within the production environment. Point of assembly sensors are disposed at locations within the production environment for transmitting data regarding where the product is and should be assembled. The product's parts also include sensors that transmit data regarding location of the parts and how they are assembled. A backend computer system stores product assembly information including the assembly instructions, where the user should be to assemble the product, how the product should be assembled, and verification of assembly accuracy. Alerts are generated if information from the sensors does not corresponding with the preprogrammed information in the computer system.

Claims (34)

1. A system for managing assembly of a multi-part product in a production environment comprising:

at least one wearable sensor disposed on or about a user's body;

at least one point of assembly sensor disposed in at least one predetermined location within the production environment;

at least one part sensor disposed on at least one of the parts of the product;

a device; and

at least one computer, wherein the at least one wearable sensor, the at least one point of assembly sensor, the at least one part sensor, the device, and the at least one computer are connected via a network, and wherein the at least one computer comprises at least one central processing unit (CPU) and at least one memory having computer readable program code portions stored therein that when executed by the at least one processing unit, cause the computer to at least:

authenticate the user's location within the production environment based on data from the wearable sensor and product assembly information;

authenticate where the product is assembled based on data from the point of assembly sensor;

authenticate whether the product is properly assembled based on data from the part sensor and the product assembly information; and

transmit instructional data regarding assembly of the product to the device when the user's location is authenticated by the at least one computer.

2. The system of claim 1 wherein the device comprises a wearable device comprising a hands-free display and wherein the instructional data comprises instructional images regarding assembly of the product.

3. The system of claim 2 wherein the wearable sensor is disposed on the user's clothing or is a part of the wearable device.

4. The system of claim 2 wherein the wearable device is a device selected from the group consisting of glasses and headsets.

5. The system of claim 2 wherein the wearable device comprises a camera for recording photographs and video of assembly of the product.

6. The system of claim 2 wherein if the user's location is not authenticated by the at least one computer, the instructional images are not transmitted to the wearable device for display to the user.

7. The system of claim 1 further comprising a 3D printer that is connected to the network for making a part or a prototype of a part for the product.

8. The system of claim 1 wherein the network is selected from the group consisting of the Internet, a wireless local area network, an Ethernet network, and an intranet.

9. A method for managing assembly of a multi-part product in a production environment comprising the steps of:

a computer authenticating a user's location within the production environment based on data from at least one wearable sensor disposed on or about the user's body;

the computer authenticating where the product is assembled based on data from at least one point of assembly sensor disposed in at least one predetermined location within the production environment;

the computer authenticating proper assembly of the product based on data from at least one part sensor disposed on at least one of the parts of the product;

the computer transmitting instructional images pertaining to assembly of the product to a wearable device comprising a hands-free display when the user's location is authenticated by the computer, wherein the instructional images are prohibited from being displayed on the device when the user's location is not authenticated by the computer,

wherein the wearable sensor, the at least one point of assembly sensor, the at least one part sensor, the computer, and the device are connected via a network.

10. The method of claim 9 further comprising the step of the computer providing instructions to a 3D printer for making a part or a prototype of a part for the product.

11. The method of claim 9 wherein the instructional images are selected from the group consisting of technical drawings, three dimensional drawings, photographs, videos, and text.

12. The method of claim 9 further comprising the step of the wearable device recording photographs and video of assembly of the product.

13. The method of claim 9 further comprising the step of the computer generating an alert if the product is assembled at a location other than the predetermined location.

14. The method of claim 9 further comprising the step of the computer generating an alert if product is improperly assembled.

15. A computer-readable storage medium for managing assembly of a multi-part product in a production environment, the computer-readable storage medium being non-transitory and having computer readable program code portions stored therein that, in response to execution by one or more central processing units (CPUs) and or more additional CPUs, cause a computer system to at least:

authenticate a user's location within a production environment based on data from at least one wearable sensor disposed on or about the user's body, wherein the at least one wearable sensor comprises a hands-free display;

transmit, to a wearable device for display thereon, instructional images pertaining to instructions for assembly of the product when the user's location is authenticated;

authenticate a location within the production environment where the product is assembled based on data from at least one point of assembly sensor disposed in at least one predetermined location within the production environment; and

authenticate proper assembly of the product based on data from at least one part sensor disposed on at least one of the parts of the product,

wherein the computer system, the at least one wearable sensor, the wearable device, the at least one point of assembly sensor, the at least one part sensor are connected via a network.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 8, 2015
From: PATEL, DEPTI; RENCHER, ROBERT J.; VINUELAS, LUIS A.; FREEMAN, ROLAND N.; NELSON, DAVID W.
To: THE BOEING COMPANY
Reel/Frame 034665/0244 →
Continuity (1)
Related Publication 20160202692A1 · Jul 14, 2016