IP Library › Granted Patent US 10,623,092
Granted Patent B2
US 10,623,092 · App. 16/555,344 · Granted Apr 14, 2020

Method and apparatus for detecting a disturbance in a medium using threshold based detection

Inventors: Justin Hayward (Southampton, GB); Andrew B. Lewis (Bristol, GB); Stuart Russell (Southampton, GB)
Assignee: AT&T Intellectual Property II, L.P.
H04B10/071G01D5/353G01D5/35358G01H9/004G01M11/3109G01M11/3127
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Quick Facts
Patent No.
US 10,623,092
App. No.
16/555,344
Granted
Apr 14, 2020
Kind
B2
Abstract

An improved technique for acoustic sensing involves, in one embodiment, launching into a medium, a plurality of groups of pulse-modulated electromagnetic-waves. The frequency of electromagnetic waves in a pulse within a group differs from the frequency of the electromagnetic waves in another pulse within the group. The energy scattered by the medium is detected and, in one embodiment, may be used to determine a characteristic of the environment of the medium. For example, if the medium is a buried optical fiber into which light pulses have been launched in accordance with the invention, the presence of acoustic waves within the region of the buried fiber can be detected.

Claims (45)

1. A method comprising:

detecting a first signal in a medium, the first signal comprising a plurality of carrier signals;

determining, from the first signal, a plurality of complex signals, each of the plurality of complex signals corresponding to one of the plurality of carrier signals for one of a plurality of fixed locations along the medium;

extracting phase information from each of the plurality of complex signals;

identifying particular carrier signals of the plurality of carrier signals that have an amplitude greater than a threshold; and

for each respective fixed location, combining the phase information of complex signals of the plurality of complex signals that correspond to the particular carrier signals for the respective fixed location to detect a disturbance in the medium.

2. The method of claim 1 , further comprising:

determining the threshold based on amplitudes of the plurality of carrier signals.

3. The method of claim 2 , wherein determining the threshold based on the amplitudes of the plurality of carrier signals comprises:

determining the threshold based on a highest amplitude of the plurality of carrier signals.

4. The method of claim 1 , wherein the first signal results from a scattering of a first pair of electromagnetic waves by the medium.

5. The method of claim 4 , wherein a frequency of a first electromagnetic wave of the first pair of electromagnetic waves is different than a frequency of a second electromagnetic wave of the first pair of electromagnetic waves.

6. The method of claim 4 , wherein a first electromagnetic wave and a second electromagnetic wave of the first pair of electromagnetic waves have a common pulse width.

7. The method of claim 6 , further comprising:

detecting a second signal associated with a scattering of a second pair of electromagnetic waves in the medium based on a common pulse width of a third electromagnetic wave of the second pair of electromagnetic waves and a fourth electromagnetic wave of the second pair of electromagnetic waves.

8. The method of claim 7 , wherein the first pair of electromagnetic waves and the second pair of electromagnetic waves propagate along the medium at a same time, and a frequency difference between the first electromagnetic wave and the second electromagnetic wave is different from a frequency difference between the third electromagnetic wave and the fourth electromagnetic wave.

9. The method of claim 7 , wherein the first pair of electromagnetic waves and the second pair of electromagnetic waves propagate along the medium at different times, and a frequency difference between the first electromagnetic wave and the second electromagnetic wave is equal to a frequency difference between the third electromagnetic wave and the fourth electromagnetic wave.

10. A system comprising:

a plurality of detectors for detecting a first signal in a medium, the first signal comprising a plurality of carrier signals;

a demodulator for determining, from the first signal, a plurality of complex signals, each of the plurality of complex signals corresponding to one of the plurality of carrier signals for one of a plurality of fixed locations along the medium;

a processor; and

a memory to store computer program instructions, the computer program instructions when executed on the processor cause the processor to perform operations comprising:

extracting phase information from each of the plurality of complex signals;

identifying particular carrier signals of the plurality of carrier signals that have an amplitude greater than a threshold; and

for each respective fixed location, combining the phase information of complex signals of the plurality of complex signals that correspond to the particular carrier signals for the respective fixed location to detect a disturbance in the medium.

11. The system of claim 10 , the operations further comprising:

determining the threshold based on amplitudes of the plurality of carrier signals.

12. The system of claim 11 , wherein determining the threshold based on the amplitudes of the plurality of carrier signals comprises:

determining the threshold based on a highest amplitude of the plurality of carrier signals.

13. The system of claim 10 , wherein the first signal results from a scattering of a first pair of electromagnetic waves by the medium.

14. The system of claim 13 , wherein a frequency of a first electromagnetic wave of the first pair of electromagnetic waves is different than a frequency of a second electromagnetic wave of the first pair of electromagnetic waves.

15. A non-transitory computer readable medium storing computer program instructions, which, when executed on a processor, cause the processor to perform operations comprising:

detecting a first signal in a medium, the first signal comprising a plurality of carrier signals;

determining, from the first signal, a plurality of complex signals, each of the plurality of complex signals corresponding to one of the plurality of carrier signals for one of a plurality of fixed locations along the medium;

extracting phase information from each of the plurality of complex signals;

identifying particular carrier signals of the plurality of carrier signals that have an amplitude greater than a threshold; and

for each respective fixed location, combining the phase information of complex signals of the plurality of complex signals that correspond to the particular carrier signals for the respective fixed location to detect a disturbance in the medium.

16. The non-transitory computer readable medium of claim 15 , the operations further comprising:

determining the threshold based on amplitudes of the plurality of carrier signals.

17. The non-transitory computer readable medium of claim 16 , wherein determining the threshold based on the amplitudes of the plurality of carrier signals comprises:

determining the threshold based on a highest amplitude of the plurality of carrier signals.

18. The non-transitory computer readable medium of claim 15 , wherein the first signal results from a scattering of a first pair of electromagnetic waves by the medium, and a first electromagnetic wave and a second electromagnetic wave of the first pair of electromagnetic waves have a common pulse width.

19. The non-transitory computer readable medium of claim 18 , the operations further comprising:

detecting a second signal associated with a scattering of a second pair of electromagnetic waves in the medium based on a common pulse width of a third electromagnetic wave of the second pair of electromagnetic waves and a fourth electromagnetic wave of the second pair of electromagnetic waves.

20. The non-transitory computer readable medium of claim 19 , wherein the first pair of electromagnetic waves and the second pair of electromagnetic waves propagate along the medium at a same time, and a frequency difference between the first electromagnetic wave and the second electromagnetic wave is different from a frequency difference between the third electromagnetic wave and the fourth electromagnetic wave.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 29, 2019
From: HAYWARD, JUSTIN; LEWIS, ANDREW B.; RUSSELL, STUART
To: AT&T CORP.
Reel/Frame 050214/0151 →
Priority Claims (1)
GB 0620257.6 · Oct 13, 2006 · national
Continuity (5)
Continuation 15673852 · Aug 10, 2017
Continuation 14617455 · Feb 9, 2015
Continuation 12795114 · Jun 7, 2010
Continuation 11645466 · Dec 27, 2006
Related Publication 20190386740A1 · Dec 19, 2019