IP Library Granted Patent US 8,358,929
Granted Patent B2
US 8,358,929 · App. 12/301,208 · Granted Jan 22, 2013

Network protection switching mechanisms and methods of network protection

Inventors: David Owen Lewis (Warwickshire, GB); Richard Andrew Jensen (Lexington, MA)
Assignee: Polatis Limited
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Quick Facts
Patent No.
US 8,358,929
App. No.
12/301,208
Granted
Jan 22, 2013
Kind
B2
Abstract

A network protection switching mechanism comprises a plurality of optical switches located at a plurality of nodes; a plurality of optical communication paths between said switches; switch based fault detectors located as part of at least two switches which generate detection results representative of the identification of a fault; switch based controllers located as part of said at least two switches; and internal switch-communication means between said fault detectors and said controllers which facilitate the transmission of detection results from said fault detectors to said controllers; wherein said controllers directly cause switching to an alternative optical communication path dependent upon the receipt of said detection results; whereby autonomous switch based protection without dependence on either inter-switch control communication or higher level network control communication is achieved.

Claims (56)

1. A network protection switching mechanism comprising:

a plurality of optical switches located at a plurality of nodes;

a plurality of optical communication paths between said switches;

switch based fault detectors located as part of at least two switches which generate detection results representative of the identification of a fault;

at least one of said fault detectors being based at a first one of said optical switches and configured to detect one of reflection and a loss of power caused by a fault between the first switch and a second one of said optical switches;

at least a further of said fault detectors being based at said second switch and configured to detect one of reflection and a loss of power caused by a fault between the first and second switches;

first and second switch based controllers located as part of said first and second switches; and

internal switch communication means between said fault detectors and said controllers which facilitate the transmission of detection results from said first and second fault detectors to corresponding first and second controllers;

wherein said first and second controllers directly cause switching to an alternative optical communication path dependent upon the receipt of said detection results; whereby autonomous switch based protection without dependence on either inter-switch control communication or higher level network control communication is achieved; and

wherein at least one of said controllers is configured to identify available paths to act as alternative optical communication paths; and said at least one controller is configured to directly instruct switching to an identified available path in response to the receipt of said fault results.

2. The network protection switching mechanism according to claim 1 , further comprising:

a plurality of protection paths; and

at least one further fault detector corresponding to at least one protection path;

wherein said controller is configured to directly instruct switching to a further protection path in response to the receipt of a fault result from said at least one fault detector.

3. The network protection switching mechanism according to claim 2 , wherein said controller is configured to switch to a further protection path in a pre-determined order.

4. The network protection switching mechanism according to claim 3 , wherein said fault detectors detect optical power of an optical signal at optical switches coupled via optical communication paths.

5. The network protection switching mechanism according to claim 2 , wherein said fault detectors detect optical power of an optical signal at optical switches coupled via optical communication paths.

6. The network protection switching mechanism according to claim 1 , wherein said fault detectors detect optical power of an optical signal at optical switches coupled via optical communication paths.

7. A network protection switching mechanism comprising:

a plurality of optical switches located at a plurality of nodes;

a plurality of optical communication paths between said switches;

switch based fault detectors located as part of at least two switches which generate detection results representative of the identification of a fault;

at least one of said fault detectors being based at a first one of said optical switches and configured to detect one of reflection and a loss of power caused by a fault between the first switch and a second one of said optical switches;

at least a further of said fault detectors being based at said second switch and configured to detect one of reflection and a loss of power caused by a fault between the first and second switches;

first and second switch based controllers located as part of said first and second switches;

internal switch communication means between said fault detectors and said controllers which facilitate the transmission of detection results from said first and second fault detectors to corresponding first and second controllers;

a plurality of protection paths; and

at least one further fault detector corresponding to at least one protection path;

wherein at least one of said controllers is configured to directly instruct switching to a further protection path in response to the receipt of a fault result from said at least one fault detector; and

wherein said first and second controllers directly cause switching to an alternative optical communication path dependent upon the receipt of said detection results; whereby autonomous switch based protection without dependence on either inter-switch control communication or higher level network control communication is achieved.

8. The network protection switching mechanism according to claim 7 , wherein said controller is configured to switch to a further protection path in a pre-determined order.

9. The network protection switching mechanism according to claim 8 , wherein said fault detectors detect optical power of an optical signal at optical switches coupled via optical communication paths.

10. The network protection switching mechanism according to claim 7 , wherein said fault detectors detect optical power of an optical signal at optical switches coupled via optical communication paths.

11. A method of network protection comprising:

detecting faults in optical signals at at least two optical switches coupled via optical communication paths, said faults being detected:

by providing at least one fault detector based at a first one of said optical switches and configured to detect one of reflection and a loss of power caused by a fault between the first switch and a second one of said optical switches; and

by providing at least a further fault detector based at the second switch and configured to detect one of reflection and a loss of power caused by a fault between the first and second switches;

generating detection results representative of the identification of a fault;

communicating said detection results internally within said switches to the respective switch based controller; and

directly causing switching to an alternative optical communication path dependent upon the receipt of said detection results; whereby autonomous switch based protection without dependence on either inter-switch control communication or higher level network control communication is achieved;

identifying available paths to act as alternative optical communication paths; and

causing said controller to directly instruct switching to an identified available path in response to the receipt of said fault results.

12. The method according to claim 11 , further comprising the step of detecting faults on at least one protection path and directly instructing switching to a further protection path in response to the receipt of a fault result from said detection.

13. The method according to claim 12 , wherein said detection is a detection of optical power of an optical signal at optical switches coupled via optical communication paths.

14. The method according to claim 11 , wherein said detection is a detection of optical power of an optical signal at optical switches coupled via optical communication paths.

15. The method according to claim 11 , wherein said detection is a detection of optical power of an optical signal at optical switches coupled via optical communication paths.

16. A method of network protection comprising:

detecting faults in optical signals at at least two optical switches coupled via optical communication paths, said faults being detected:

by providing at least one fault detector based at a first one of said optical switches and configured to detect one of reflection and a loss of power caused by a fault between the first switch and a second one of said optical switches; and

by providing at least a further fault detector based at the second switch and configured to detect one of reflection and a loss of power caused by a fault between the first and second switches;

generating detection results representative of the identification of a fault;

communicating said detection results internally within said switches to the respective switch based controller; and

directly causing switching to an alternative optical communication path dependent upon the receipt of said detection results; whereby autonomous switch based protection without dependence on either inter-switch control communication or higher level network control communication is achieved;

detecting faults on at least one protection path; and

directly instructing switching to a further protection path in response to the receipt of a fault result from said detection.

17. The method according to claim 16 , wherein said detection is a detection of optical power of an optical signal at optical switches coupled via optical communication paths.

Assignments (7)
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNEE CITY ADDRESS PREVIOUSLY RECORDED AT REEL: 044836 FRAME: 0728. ASSIGNOR(S) HEREBY CONFIRMS THE CHANGE OF NAME. Recorded Feb 14, 2018
From: POLATIS LIMITED
To: HUBER+SUHNER POLATIS LIMITED
Reel/Frame 045338/0875 →
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNEE NAME PREVIOUSLY RECORDED AT REEL: 043632 FRAME: 0155. ASSIGNOR(S) HEREBY CONFIRMS THE CHANGE OF NAME. Recorded Oct 11, 2017
From: POLATIS LIMITED
To: HUBER+SUHNER POLATIS LIMITED
Reel/Frame 044836/0728 →
CHANGE OF NAME Recorded Sep 19, 2017
From: POLATIS LIMITED
To: HEBER+SUHNER POLATIS LIMITED
Reel/Frame 043632/0155 →
RELEASE OF SECURITY INTEREST Recorded Jun 10, 2016
From: CLYDESDALE BANK PLC
To: POLATIS PHOTONICS, INC.
Reel/Frame 038880/0845 →
SECURITY INTEREST Recorded Oct 24, 2014
From: POLATIS PHOTONICS, INC.
To: CLYDESDALE BANK PLC.
Reel/Frame 034028/0565 →
SECURITY AGREEMENT Recorded Oct 25, 2012
From: POLATIS LIMITED
To: CLYDESDALE BANK PLC
Reel/Frame 029197/0288 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 10, 2009
From: LEWIS, DAVID OWEN; JENSEN, RICHARD ANDREW
To: POLATIS LIMITED
Reel/Frame 022809/0423 →
Priority Claims (1)
GB 0610819.5 · Jun 1, 2006 · national
Continuity (2)
Provisional Application 60876348 · Dec 20, 2006
Related Publication 20100027989A1 · Feb 4, 2010