IP Library › Granted Patent US 10,663,290
Granted Patent B1
US 10,663,290 · App. 16/296,489 · Granted May 26, 2020

Dynamic fiber optic shape sensing

Inventors: Alex Tongue (Austin, TX); Justin Braun (Austin, TX)
Assignee: SENSURON LLC
G01B11/245G01B11/2441G01D5/35316G02B6/02076G02B6/04
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Quick Facts
Patent No.
US 10,663,290
App. No.
16/296,489
Granted
May 26, 2020
Kind
B1
Abstract

Disclosed herein are various implementations of a fiber optic shape-sensing system comprising a plurality of optical fibers helically twisted and rigidly bonded to form a linearly-running shape-sensing bundle for measuring position, bend, and twist of the shape-sensing bundle, wherein each optical fiber from among the plurality of optical fibers comprises a single core. Several such implementations of the systems further comprise an array of Fiber Bragg Gratings (FBGs) disposed within the core of each single-core optical fiber from among the plurality of single-core optical fibers.

Claims (20)

1. A fiber optic shape-sensing system comprising:

a plurality of optical fibers helically twisted and rigidly bonded to form a linearly-running shape-sensing bundle for measuring position, bend, and twist of the shape-sensing bundle, wherein each optical fiber from among the plurality of optical fibers comprises a single core;

an interrogator for transmitting light to, and receiving reflected light from, the shape-sensing bundle to produce interrogation data, wherein said interrogator is operationally coupled to said shape-sensing bundle, and wherein said interrogator comprises a plurality of inputs each of which is operationally coupling with each of the plurality of optical fibers; and

a computing system operationally coupled to the interrogator and interpreting the interrogations data to determine position, bend, and twist of the shape-sensing bundle.

2. The system of claim 1 , further comprising an array of Fiber Bragg Gratings (FBGs) disposed within the core of each single-core optical fiber from among the plurality of single-core optical fibers.

3. The system of claim 2 , wherein at least a subset of FBGs from among the plurality of FBGs in at least one optical fiber from among the plurality of optical fibers overlaps a subset of gaps between FBGs from among the plurality of FBGs in at least one other optical fiber from among the plurality of optical fibers.

4. The system of claim 2 , wherein at least a subset of FBGs from among the plurality of FBGs in each optical fiber from among the plurality of optical fibers overlaps a subset of gaps between FBGs from among the plurality of FBGs for each of the other optical fiber from among the plurality of optical fibers in the shape-sensing bundle.

5. The system of claim 2 , wherein the array of FBGs disposed within the core of each single-core optical fiber comprises a single elongated FBG running the entire length of a shape-sensing region of the shape-sensing bundle.

6. The system of claim 1 , wherein the plurality of optical fibers comprises at least seven optical fibers with a first fiber running linearly and six other optical fibers encompassing the first fiber, wherein the first optical fiber remains centrally-positioned with respect to the six other optical fibers, and wherein the six other fibers are helically twisted around the first optical fiber.

7. The system of claim 1 , wherein the plurality of optical fibers comprises at least three optical fibers that are helically twisted around each other to form a triple-helix strand running linearly.

8. The system of claim 1 , wherein the interrogation data is processed using Optical Frequency Domain Reflectometry (OFDR) or Optical Time Domain Reflectometry (OTDR).

9. The system of claim 1 , wherein the shape-sensing bundle further comprises a free-floating temperature-detecting fiber.

10. A device for interrogation-based shape-sensing, the device comprising:

a plurality of optical fibers helically twisted and rigidly bonded to form a linear shape-sensing bundle for measuring position, bend, and twist of the shape-sensing bundle, wherein each optical fiber from among the plurality of optical fibers comprises a single core;

an interrogator for transmitting light to, and receiving reflected light from, the shape-sensing bundle to produce interrogation data, wherein said interrogator is operationally coupled to said shape-sensing bundle, and wherein said interrogator comprises a plurality of inputs each of which is operationally coupling with each of the plurality of optical fibers; and

a computing system operationally coupled to the interrogator and interpreting the interrogations data to determine position, bend, and twist of the shape-sensing bundle.

11. The device of claim 10 , wherein an array of Fiber Bragg Gratings (FBGs) are disposed within the core of each single-core optical fiber from among the plurality of single-core optical fibers, and wherein each optical fiber from among the plurality of optical fibers each comprising no more than one core.

12. The device of claim 10 , wherein the interrogation data is processed using either Wavelength Division Multiplexing (WDM) or Optical Frequency Domain Reflectometry (OFDR) or Optical Time Domain Reflectometry (OTDR).

13. The device of claim 10 , wherein the plurality of optical fibers comprises at least seven optical fibers with a first fiber running linearly and six other optical fibers helically twisted around the first optical fiber.

14. The device of claim 10 , further comprising an interrogator for transmitting light to, and receiving reflected light from, the shape-sensing bundle to produce interrogation data, wherein the interrogator comprises an interface for operationally coupling the interrogator with the shape-sensing bundle.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 14, 2020
From: SENSURON LLC
To: THE SHAPE SENSING COMPANY INC.
Reel/Frame 053200/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 8, 2019
From: BRAUN, JUSTIN
To: SENSURON LLC
Reel/Frame 048541/0474 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 8, 2019
From: TONGUE, ALEX
To: SENSURON LLC
Reel/Frame 048543/0052 →
Cited By (3)
US 12,222,556 US 12,292,353 US 12,569,311