IP Library Granted Patent US 9,726,523
Granted Patent B2
US 9,726,523 · App. 14/412,643 · Granted Aug 8, 2017

Optical monitoring system

Inventors: Edward Alfred Denzil Austin (Netley Abbey, GB); Philip Nash (London, GB)
Assignee: STINGRAY GEOPHYSICAL INC.
G01D5/268G01D5/35383G01D5/35387G01V1/226
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Quick Facts
Patent No.
US 9,726,523
App. No.
14/412,643
Granted
Aug 8, 2017
Kind
B2
Abstract

An optical monitoring system comprising first and second sensor arrays interrogated via first and second optical connections from an interrogator location. The system is configured such that no wavelength is carried bi-directionally in the first and second optical connections. In typical systems the optical connections comprise trunk cables from the sensor arrays to the interrogator location.

Claims (39)

1. An optical sensing system, comprising

an interrogator system comprising

a first optical signal source configured to output a first set of optical interrogation signals;

a second optical signal source configured to output a second set of optical interrogation signals, the wavelengths of the first and second sets of optical interrogation signals being distinct;

a first optical sensor array configured to be interrogated by the first set of optical interrogation signals;

a second optical sensor array configured to be interrogated by the second set of optical interrogation signals;

a first optical receiver, for receiving the first set of optical interrogation signals;

a second optical receiver for receiving the second set of optical interrogation signals

a first optical connection for coupling the first set of optical interrogation signals from the first optical signal source to the first sensor array, and for coupling optical signals from the second sensor array to the second optical receiver; and

a second optical connection for coupling the second set of optical interrogation signals from the second optical signal source to the second sensor array, and for coupling optical signals from the first sensor array to the first optical receiver.

2. An optical sensing system according to claim 1 , wherein the first optical connection comprises a first trunk fibre connecting the first optical signal source and the second optical receiver to a first optical circulator coupled to the first and second sensor arrays, and the second optical connection comprises a second trunk fibre connecting the second optical signal source and the first optical receiver to a second circulator coupled to the first and second sensor arrays.

3. An optical sensing system according to claim 1 , wherein the first optical connection comprises a first trunk fibre connecting the first optical signal source and the second optical receiver to a first wavelength division multiplexer coupled to the first and second sensor arrays, and the second optical connection comprises a second trunk fibre connecting the second optical signal source and the first optical receiver to a second wavelength division multiplexer coupled to the first and second sensor arrays.

4. An optical sensing system according to claim 1 , wherein the first sensor array is configured to also be interrogated by the second set of optical interrogation signals, and the second sensor array is configured to also be interrogated by the first set of optical interrogation signals.

5. An optical sensing system according to claim 1 , further comprising a third optical connection for coupling the first set of wavelengths from the interrogator system to the second sensor array and the second set of wavelengths from the first sensor array to the interrogator system, and a fourth optical connection for coupling the second set of wavelengths from the interrogator system to the first sensor array and the first set of wavelengths from the second sensor array to the interrogator system.

6. An optical system according to claim 1 , wherein the first and second sets of optical signals each comprise 8 or 16 discrete signals.

7. An optical sensing system, comprising

an interrogator system comprising

a first optical signal source configured to output a first set of optical interrogation signals;

a second optical signal source configured to output a second set of optical interrogation signals, the wavelengths of the first and second sets of optical interrogation signals being distinct;

a first primary optical sensor array configured to be interrogated by the first set of optical interrogation signals and a first secondary optical sensor array configured to be interrogated by the second set of optical interrogation signals;

a second primary optical sensor array configured to be interrogated by the second set of optical interrogation signals and a second secondary optical sensor array configured to be interrogated by the first set of optical interrogation signals;

a first optical receiver, for receiving the first set of optical interrogation signals;

a second optical receiver for receiving the second set of optical interrogation signals;

a first optical connection for coupling the first set of optical interrogation signals from the first optical signal source to the first primary sensor array, the second set of optical interrogation signals from the second optical signal source to the first secondary sensor array, the second set of optical interrogation signals from the second primary sensor array to the second optical receiver, and the first set of optical interrogation signals from the second secondary sensor array to the first optical receiver,

a second optical connection for coupling the second set of optical interrogation signals from the second optical signal source to the second primary sensor array, the first set of optical interrogation signals from the first optical signal source to the second secondary sensor array, the first set of optical interrogation signals from the first primary sensor array to the first optical receiver, and the second set of optical interrogation signals from the first secondary sensor array to the second optical receiver,

wherein the system is configured such that each wavelength does not propagate bidirectionally in the first or second optical connection by interrogating only the primary or only the secondary sensors arrays at any time.

8. An optical sensing system according to claim 7 , wherein each optical connection comprises wavelength division multiplexers to separate the first and second sets of optical signals, and each optical connection comprises an optical circulator at the end distal from the interrogator system connecting the each optical connection to the first and second sensor arrays.

9. An optical sensing system, comprising

an interrogator system comprising

a first optical signal source configured to output a first set of optical interrogation signals;

a second optical signal source configured to output a second set of optical interrogation signals, the wavelengths of the first and second sets of optical interrogation signals being distinct;

a first optical sensor array configured to be interrogated by the first set of optical interrogation signals and by the second set of optical interrogation signals;

a second optical sensor array configured to be interrogated by the second set of optical interrogation signals and by the first set of optical interrogation signals;

a first optical receiver, for receiving the first set of optical interrogation signals;

a second optical receiver for receiving the second set of optical interrogation signals;

a first optical connection for coupling the first and second sets of optical interrogation signals from the first and second optical signal sources to the first sensor array, and the first and second sets of optical interrogation signals from the second secondary sensor array to the first and second optical receivers,

a second optical connection for coupling the first and second sets of optical interrogation signals from the first and second optical signal sources to the second sensor array, and the first and second sets of optical interrogation signals from the first sensor array to the first and second optical receivers, wherein

the system is configured such that each wavelength does not propagate bidirectionally in the first or second optical connection.

10. An optical sensing system according to claim 9 , wherein each optical connection comprises wavelength division multiplexers to separate the first and second sets of optical signals, and each optical connection comprises an optical circulator at the end distal from the interrogator system connecting the each optical connection to the first and second sensor arrays.

Assignments (8)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 27, 2017
From: STINGRAY GEOPHYSICAL INC.
To: STINGRAY GEOPHYSICAL HONG KONG LIMITED
Reel/Frame 043975/0327 →
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNEE'S NAME PREVIOUSLY RECORDED AT REEL: 042488 FRAME: 0102. ASSIGNOR(S) HEREBY CONFIRMS THE CHANGE OF NAME. Recorded Aug 7, 2017
From: 932839-4 CANADA INC.
To: STINGRAY GEOPHYSICAL INC.
Reel/Frame 043478/0245 →
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNEE'S STREET ADDRESS PREVIOUSLY RECORDED AT REEL: 042104 FRAME: 0722. ASSIGNOR(S) HEREBY CONFIRMS THE CHANGE OF NAME. Recorded May 17, 2017
From: 932839-4 CANADA INC.
To: STINGRAY GEOPHYSICAL LIMITED
Reel/Frame 042488/0102 →
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNEE'S NAME PREVIOUSLY RECORDED AT REEL: 040182 FRAME: 0188. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Mar 28, 2017
From: 932839-4 CANADA INC.
To: STINGRAY GEOPHYSICAL INC.
Reel/Frame 042104/0722 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 29, 2016
From: TGS GEOPHYSICAL COMPANY (UK) LIMITED
To: 9328394 CANADA INC.
Reel/Frame 040182/0110 →
CHANGE OF NAME Recorded Sep 29, 2016
From: 932839-4 CANADA INC.
To: STRINGRAY GEOPHYSICAL INC.
Reel/Frame 040182/0188 →
CHANGE OF NAME Recorded Sep 21, 2016
From: STINGRAY GEOPHYSICAL LIMITED
To: TGS GEOPHYSICAL COMPANY (UK) LIMITED
Reel/Frame 039820/0902 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 2, 2015
From: AUSTIN, EDWARD ALFRED DENZIL; NASH, PHILIP
To: STINGRAY GEOPHYSICAL LTD
Reel/Frame 035069/0371 →
Priority Claims (1)
GB 1211865.9 · Jul 4, 2012 · national
Continuity (1)
Related Publication 20150185052A1 · Jul 2, 2015