Optical power limiting method using stimulated Brillouin scattering in fiber optic waveguides

US9835478B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9835478-B2
Application numberUS-201314911604-A
CountryUS
Kind codeB2
Filing dateOct 7, 2013
Priority dateOct 7, 2013
Publication dateDec 5, 2017
Grant dateDec 5, 2017

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  1. Title

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  2. Abstract

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  5. First independent claim

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Abstract

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A fiber optic sensor interrogation system with inbuilt passive power limiting capability based on stimulated Brillouin scattering that provides improved safety performance for use in explosive atmospheres.

First claim

Opening claim text (preview).

What is claimed: 1. In a fiber optic sensor interrogation systems that includes at least a light emitting path for sending interrogation light signals and a light receiving path for receiving returned light signals, a method for enhancing safety by: a. sending the interrogation light signals from the light emitting path through a circulator/coupler device out into a region of interest to be measured; b. returning backscattered light from the region of interest through the circulator/coupler device into the light receiving path; and c. placing a passive power limiting fiber with a low stimulated Brillouin scattering threshold in the light emitting path before the circulator/coupler device. 2. The method for enhancing safety of claim 1 wherein the returning of backscattered light from the region of interest through the circulator/coupler into the light receiving path further includes at least; a. feeding the backscattered light into an optical receiver/detector to detect and analyze the returned signals. 3. The method for enhancing safety of claim 1 wherein the passive power limiting fiber with a low stimulated Brillouin scattering threshold is a single-mode fiber with high numerical aperture to produce a smaller mode-field diameter. 4. The method for enhancing safety of claim 1 wherein the passive power limiting fiber with a low stimulated Brillouin scattering threshold is a chalcogencide glass fiber. 5. The method for enhancing safety of claim 1 wherein the sending of the interrogation light signals includes at least; a. providing a light signal; b. providing optical amplification to that light signal. 6. The method for enhancing safety of claim 5 wherein the sending of the interrogation light signals further comprises; a. providing pulse generation to that light signal. 7. The method for enhancing safety of claim 6 wherein the returning of backscattered light from the region of interest through the circulator/coupler into the light receiving path further includes at least; a. feeding the backscattered light into an optical receiver/detector to detect and analyze the returned signals. 8. The method for enhancing safety of claim 7 wherein the passive power limiting fiber with a low stimulated Brillouin scattering threshold is a single-mode fiber with high numerical aperture to produce a smaller mode-field diameter. 9. The method for enhancing safety of claim 7 wherein the passive power limiting fiber with a low stimulated Brillouin scattering threshold is a chalcogencide glass fiber. 10. A fiber optic sensor interrogation system with inbuilt passive power limiting capability comprising: a. a light source; b. optical amplification circuitry acting on that light source; c. pulse generation circuitry acting on that amplified light source; d. wherein the light source, optical amplification circuitry and pulse generation circuitry represent a light emitting path for the fiber optic interrogation system; e. a circulator/coupler device that directs light from the light emitting path for the fiber optic interrogation system into a region of interest for sensing, and receives and redirects backscattered light from the region of interest; f. a passive power limiting fiber with a low stimulated Brillouin scattering threshold placed in the light emitting path before the circulator/coupler device. 11. The fiber optic sensor interrogation system with inbuilt passive power limiting capability of claim 10 further comprising: a. an optical receiver/detector that receives the redirected backscattered light from the region of interest. 12. The fiber optic sensor interrogation system with inbuilt passive power limiting capability of claim 11 further comprising: a. an electronic control system for providing control parameters to the optical amplification circuitry acting on the light source and the pulse generation circuitry acting on the light source. 13. The fiber optic sensor interrogation system with inbuilt passive power limiting capability of claim 12 wherein the passive power limiting fiber with a low stimulated Brillouin scattering threshold is a single-mode fiber with high numerical aperture to produce a smaller mode-field diameter. 14. The fiber optic sensor interrogation system with inbuilt passive power limiting capability of claim 12 wherein the passive power limiting fiber with a low stimulated Brillouin scattering threshold is a chalcogencide glass fiber. 15. The fiber optic sensor interrogation system with inbuilt passive power limiting capability of claim 10 wherein the laser, optical amplification circuitry and pulse generation circuitry are combined into a single component. 16. The fiber optic sensor interrogation system with inbuilt passive power limiting capability of claim 15 further comprising: a. an optical receiver/detector that receives the redirected backscattered light from the region of interest. 17. The fiber optic sensor interrogation system with inbuilt passive power limiting capability of claim 16 wherein the passive power limiting fiber with a low stimulated Brillouin scattering threshold is a single-mode fiber with high numerical aperture to produce a smaller mode-field diameter. 18. The fiber optic sensor interrogation system with inbuilt passive power limiting capability of claim 16 wherein the a passive power limiting fiber with a low stimulated Brillouin scattering threshold is a chalcogencide glass fiber. 19. A fiber optic sensor interrogation system with inbuilt passive power limiting capability comprising: a. a light source having a light emitting path; b. a circulator/coupler device that directs light from the light emitting path for the fiber optic interrogation system into a region of interest for sensing, and receives and redirects backscattered light from the region of interest; c. a passive power limiting fiber with a low stimulated Brillouin scattering threshold placed in the light emitting path before the circulator/coupler device. 20. The fiber optic sensor interrogation system with inbuilt passive power limiting capability of claim 19 further comprising: a. an optical receiver/detector that receives the redirected backscattered light from the region of interest. 21. The fiber optic sensor interrogation system with inbuilt passive power limiting capability of claim 19 wherein the passive power limiting fiber with a low stimulated Brillouin scattering threshold is a single-mode fiber with high numerical aperture to produce a smaller mode-field diameter. 22. The fiber optic sensor interrogation system with inbuilt passive power limiting capability of claim 19 wherein the passive power limiting fiber with a low stimulated Brillouin scattering threshold is a chalocogencide glass fiber.

Assignees

Inventors

Classifications

  • using optical fibres · CPC title

  • Backscatter · CPC title

  • Small effective area or mode field radius, e.g. for allowing nonlinear effects (non-linear optical waveguide devices G02F1/365) · CPC title

  • comprising optical fibres · CPC title

  • using inelastic backscattering to detect the measured quantity, e.g. using Brillouin or Raman backscattering · CPC title

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What does patent US9835478B2 cover?
A fiber optic sensor interrogation system with inbuilt passive power limiting capability based on stimulated Brillouin scattering that provides improved safety performance for use in explosive atmospheres.
Who is the assignee on this patent?
Halliburton Energy Services Inc
What technology area does this patent fall under?
Primary CPC classification G01D5/35364. Mapped technology areas include Physics.
When was this patent published?
Publication date Tue Dec 05 2017 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).