IP Library Granted Patent US 9,817,439
Granted Patent B2
US 9,817,439 · App. 15/056,076 · Granted Nov 14, 2017

System, method and device for designing, manufacturing, and monitoring custom human-interfacing devices

Inventors: George John Gosieski, Jr. (Seattle, WA); George Jeongsoo Gosieski (Seattle, WA); Aaron Zev Lichtner (Seattle, WA)
Assignee: JumpStartCSR, Inc.
G06F1/163B33Y50/02G06F3/011G06F3/14G06F17/5086G06F2203/0382G06F2203/0384G09G2370/16
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Quick Facts
Patent No.
US 9,817,439
App. No.
15/056,076
Granted
Nov 14, 2017
Kind
B2
Abstract

A system, method and device employs sensor arrangements and an e-system in designing, manufacturing, and monitoring custom human-interfacing devices.

Claims (62)

1. A method for using a computer system to design a human interacting physical device, comprising:

electronically receiving, by a computer system, data defining characteristics of at least a portion of a first device to be formed or modified, wherein the data is received from one or more sensors mounted to a second device, and wherein the data relates to one or more specific human bodies;

searching, by the computer system and based on the received data, one or more digital libraries for an object corresponding to the first device, and retrieving at least a shape characteristic and a material constituency characteristics associated with the object;

evaluating, by the computer system and based on the received data, whether the shape characteristic or the material constituency characteristic of the object requires adaptation in order to produce the first device;

determining, by the computer system, whether the shape characteristic or the material constituency characteristic of the object requires adaptation to be an optimized design for the first device;

upon the shape characteristic or the material constituency characteristic of the object requiring adaptation, simulating, by the computer system and based on the received data, one or more changes in the shape characteristic and one or more changes in the material constituency characteristic of the object;

storing, by the computer system, object design characteristics comprising at least one of the simulated changes in the shape characteristic or in the material constituency characteristic of the object in the one or more digital libraries; and

generating a design for the first device based upon the stored object design characteristics.

2. The method of claim 1 , including the further step of generating manufacturing or modifying instructions and manufacturing or modifying the first device based on the object design characteristics using additive manufacturing, subtractive manufacturing or a combination of additive and subtractive manufacturing.

3. The method of claim 1 , wherein the second device comprises at least one morphable physical attribute controlled by a controller associated with the second device, and receiving, by the controller associated with the second device, instructions associated with the object design characteristics in order to morph the second device.

4. The method of claim 1 , including the step of using the stored object design characteristics to design the first device for a different human body from the one or more specific human bodies.

5. The method of claim 1 , wherein the data defining characteristics of the first device is received from one or more sensors mounted to multiple areas of the second device.

6. The method of claim 1 , wherein the one or more sensors include a radar sensor subsystem comprising one or more of a pulse generator, transceiver, and an antenna arrangement to transmit generated pulses and receive pulse echoes.

7. The method of claim 1 , wherein the design is based on at least one of: ergonomics, improving physical performance, avoiding injury, and acceleration rehabilitation.

8. The method of claim 1 , further comprising the step of designing at least a second device to interoperate with the first device.

9. The method of claim 8 , including the steps of:

providing at least a first sensor collecting data associated with the use of the first device or the performance of a user of the first device;

providing at least a second sensor collecting data associated with the use of the second device or the performance of a user of the second device; and

providing, by the system, based on the data associated with the use of the first or second device at least one recommended adaptation to one of the first or second devices.

10. The method of claim 2 , including the steps of:

providing at least one sensor collecting data associated with the use of the first device or the performance of a user of the first device; and

providing, by the system, based on the data associated with the use of the first device or the performance of a user of the first device, at least one recommended adaptation to the first device.

11. The method of claim 10 , including manufacturing the first device with the recommended adaptation using additive manufacturing, subtractive manufacturing, or a combination of additive and subtractive manufacturing.

12. The method of claim 1 , wherein the step of searching includes searching for most closely similar objects from a database of commercially available objects.

13. The method of claim 1 , wherein the step of receiving data defining characteristics comprises receiving an instruction related to at least one of: improving physical performance, reducing pain, rehabilitation, predicting injury, adapting physical performance to match a defined human individual, and product evaluation.

14. The method of claim 1 , wherein the evaluating step comprises evaluating at least one of: cost, time, individual user fit, environment, and manufacturing.

15. A method for using a computer system to design a human interacting physical device, comprising:

electronically receiving data defining characteristics of a first device to be formed or modified, wherein the first device is of a first type, and wherein the data is received from one or more sensors mounted to a second device of the first type, and wherein the data relates to one or more specific human bodies;

searching one or more digital libraries, based on the received data, for an object of the first type, and retrieving at least a shape characteristic and a material constituency characteristic associated with the object;

determining, by the computer system, whether the shape characteristic or the material constituency characteristic of the object requires adaptation to be an optimized design for the first device;

simulating, by the computer system and based on the received data, one or more changes in the shape characteristic and one or more changes in the material constituency characteristic of the object; and

generating a design for the first device based on the simulated changes and the received data, wherein the design comprises manufacturing or modifying instructions and object design characteristics, wherein the object design characteristics comprise at least one of the simulated changes in the shape characteristic or in the material constituency characteristic of the object.

16. The method of claim 15 , further including transmitting the object design characteristics to an additive manufacturing component, subtractive manufacturing component, or combination additive and subtractive manufacturing component for fabricating or modifying the first device defined by the object design characteristics.

17. The method of claim 16 , including the steps of:

providing at least one sensor collecting data associated with the use of the first device or the performance of a user of the first device; and

providing, by the system, based on the data associated with the use of the first device or the performance of a user of the first device, at least one recommended adaptation to the first device.

18. A custom human-interacting device manufacturing system, comprising:

one or more sensors mounted to a first device of a first type, with the one or more sensors comprising at least a battery, a transceiver and an antenna array;

an e-system in wired or wireless communication with the one or more sensors, and configured to perform signal processing, control processing and remote device communication;

a remote device comprising at least one processor and memory storing instructions, executable by the processor, to

receive data defining characteristics of a second device to be formed or modified, wherein the second device is of the first type, wherein the data is received from the one or more sensors via the e-system, and wherein the data relates to one or more specific human bodies;

search one or more digital libraries, based on the received data, for an object of the first type, and retrieve at least a shape characteristic and a material constituency characteristics associated with the object;

determine whether the shape characteristic or the material constituency characteristic of the object requires adaptation to be an optimized for the second device;

simulate, based on the received data, one or more changes in the shape characteristic and one or more changes in the material constituency characteristic of the object; and

store manufacturing instructions and object design characteristics comprising at least one of the simulated changes in the shape characteristic or in the material constituency characteristic of the object in the one or more digital libraries; and

a manufacturing device for generating or modifying a design of the second device based on the stored object design characteristics and the manufacturing instructions.

19. The system of claim 18 , wherein the one or more sensors further comprise a signal control processor.

20. The system of claim 18 , wherein the one or more sensors further comprise an inertial measurement unit.

21. The system of claim 18 , wherein the one or more sensors further comprise a signal control processor and an inertial measurement unit.

22. The system of claim 18 , wherein the manufacturing device employs additive manufacturing, subtractive manufacturing, or a combination of additive and subtractive manufacturing.

23. A custom human-interacting device design system, comprising:

one or more sensors mounted to a first device of a first type, with the one or more sensors comprising at least a transceiver and an antenna array;

an e-system in wired or wireless communication with the one or more sensors, and configured to perform signal processing, control processing and remote device communication;

a remote device comprising at least one processor and memory storing instructions, executable by the processor, to

receive data defining characteristics of a second device of a second type to be formed, wherein the data is received from the one or more sensors via the e-system, and wherein the data relates to one or more specific human bodies;

search one or more digital libraries for an object of the second type based on the received data, and retrieve at least a shape characteristic and a material constituency characteristics associated with the object;

determine whether the shape characteristic or the material constituency characteristic of the object requires adaptation to be an optimized design for the second device;

simulate, based on the received data, one or more changes in the shape characteristic and one or more changes in the material constituency characteristic of the object;

store manufacturing instructions and object design characteristics comprising at least one of the simulated changes in the shape characteristic or in the material constituency characteristic of the object in the one or more digital libraries; and

a controller for generating or modifying a design for the second device based on the stored object design characteristics and the manufacturing instructions.

24. The system of claim 23 , wherein the second device comprises at least one morphable physical attribute controlled by the controller, and wherein the remote device receives, from the controller, instructions associated with the object design characteristics in order to morph the second device.

25. The system of claim 23 , including the step of using the stored object design characteristics to design the first device for a different human body from the one or more specific human bodies.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 29, 2016
From: GOSIESKI, GEORGE JOHN, JR; GOSIESKI, GEORGE JEONGSOO; LICHTNER, AARON ZEV
To: JUMPSTARTCSR, INC.
Reel/Frame 037852/0198 →
Continuity (1)
Related Publication 20170249417A1 · Aug 31, 2017