Claims
- 1. A method for communicating a signal, comprising:
receiving a signal at a primary device of a switching system, the primary device associated with a primary path, the signal propagating along the primary path; generating a primary overmodulation signal associated with the primary path; detecting an absence of the primary overmodulation signal associated with the primary path; and sending an operating signal from the primary device to a secondary device of the switching system, the secondary device associated with a secondary path, the operating signal operable to initiate propagation of the signal along the secondary path.
- 2. The method of claim 1, wherein the primary overmodulation signal comprises a first primary overmodulation signal associated with the primary path comprising a first primary path, and further comprising disabling a second primary overmodulation signal associated with a second primary path in response to detecting the absence of the primary overmodulation signal, the first primary path associated with a first propagation direction, the second primary path associated with a second propagation direction opposite to the first propagation direction.
- 3. The method of claim 1, wherein the primary path comprises one or more optical amplifiers.
- 4. The method of claim 1, further comprising:
generating a secondary overmodulation signal associated with the secondary path; detecting an absence of the secondary overmodulation signal associated with the secondary path; and providing a notification of the absence of the secondary overmodulation signal.
- 5. The method of claim 1, further comprising:
splitting the signal; directing the signal to the primary path and the secondary path; preventing the signal from propagating along the primary path in response to detecting the absence of the primary overmodulation signal; and propagating the signal along the secondary path in response to the operating signal.
- 6. The method of claim 1, further comprising switching the signal from the primary path to the secondary path at a switch in response to detecting the absence of the primary overmodulation signal.
- 7. A system for communicating a signal, comprising:
an input of a primary device operable to receive a signal, the primary device associated with a primary path, the signal propagating along the primary path; a primary modulation device coupled to the input and operable to generate a primary overmodulation signal associated with the primary path; a primary detection device coupled to the primary modulation device and operable to detect an absence of the primary overmodulation signal associated with the primary path; and a primary operating device coupled to the primary detection device and operable to send an operating signal from the primary device to a secondary device of the switching system, the secondary device associated with a secondary path, the operating signal operable to initiate propagation of the signal along the secondary path.
- 8. The system of claim 7, wherein:
the primary overmodulation signal comprises a first primary overmodulation signal associated with the primary path comprising a first primary path; and the primary operating device is further operable to disable a second primary overmodulation signal associated with a second primary path in response to detecting the absence of the primary overmodulation signal, the first primary path associated with a first propagation direction, the second primary path associated with a second propagation direction opposite to the first propagation direction.
- 9. The system of claim 7, wherein the primary path comprises one or more optical amplifiers.
- 10. The system of claim 7, further comprising:
a secondary modulation device coupled to the primary operating device and operable to generate a secondary overmodulation signal associated with the secondary path; a secondary detection device coupled to the secondary modulation device and operable to detect an absence of the secondary overmodulation signal associated with the secondary path; and a secondary operating device coupled to the secondary detection device and operable to provide a notification of the absence of the secondary overmodulation signal.
- 11. The system of claim 7, wherein:
the primary operating device is further operable to prevent the signal from propagating along the primary path in response to detecting the absence of the primary overmodulation signal; and the secondary device is operable to propagate the signal along the secondary path in response to the operating signal.
- 12. The system of claim 7, further comprising a switch operable to switch the signal from the primary path to the secondary path in response to detecting the absence of the primary overmodulation signal.
- 13. Logic for communicating a signal, the logic embodied in a medium and operable to:
receive a signal at a primary device of a switching system, the primary device associated with a primary path, the signal propagating along the primary path; generate a primary overmodulation signal associated with the primary path; detect an absence of the primary overmodulation signal associated with the primary path; and send an operating signal from the primary device to a secondary device of the switching system, the secondary device associated with a secondary path, the operating signal operable to initiate propagation of the signal along the secondary path.
- 14. The logic of claim 13, wherein:
the primary overmodulation signal comprises a first primary overmodulation signal associated with the primary path comprising a first primary path; and the logic is further operable to disable a second primary overmodulation signal associated with a second primary path in response to detecting the absence of the primary overmodulation signal, the first primary path associated with a first propagation direction, the second primary path associated with a second propagation direction opposite to the first propagation direction.
- 15. The logic of claim 13, wherein the primary path comprises one or more optical amplifiers.
- 16. The logic of claim 13, further operable to:
generate a secondary overmodulation signal associated with the secondary path; detect an absence of the secondary overmodulation signal associated with the secondary path; and provide a notification of the absence of the secondary overmodulation signal.
- 17. The logic of claim 13, further operable to:
split the signal; direct the signal to the primary path and the secondary path; prevent the signal from propagating along the primary path in response to detecting the absence of the primary overmodulation signal; and propagate the signal along the secondary path in response to the operating signal.
- 18. The logic of claim 13, further operable to switch the signal from the primary path to the secondary path at a switch in response to detecting the absence of the primary overmodulation signal.
- 19. A system for communicating a signal, comprising:
means for receiving a signal at a primary device of a switching system, the primary device associated with a primary path, the signal propagating along the primary path; means for generating a primary overmodulation signal associated with the primary path; means for detecting an absence of the primary overmodulation signal associated with the primary path; and means for sending an operating signal from the primary device to a secondary device of the switching system, the secondary device associated with a secondary path, the operating signal operable to initiate propagation of the signal along the secondary path.
- 20. A method for communicating a signal, comprising:
splitting a signal; directing the signal to a primary path and a secondary path; receiving the signal at a primary device of a switching system, the primary device associated with the primary path, the signal propagating along the primary path, the primary path comprising one or more optical amplifiers; generating a primary overmodulation signal associated with the primary path, the primary overmodulation signal comprising a first primary overmodulation signal associated with the primary path comprising a first primary path; detecting an absence of the primary overmodulation signal associated with the primary path; disabling a second primary overmodulation signal associated with a second primary path in response to detecting the absence of the primary overmodulation signal, the first primary path associated with a first propagation direction, the second primary path associated with a second propagation direction opposite to the first propagation direction; sending an operating signal from the primary device to a secondary device of the switching system, the secondary device associated with the secondary path, the operating signal operable to initiate propagation of the signal along the secondary path; preventing the signal from propagating along the primary path in response to detecting the absence of the primary overmodulation signal, and propagating the signal along the secondary path in response to the operating signal, or switching the signal from the primary path to the secondary path at a switch in response to detecting the absence of the primary overmodulation signal; generating a secondary overmodulation signal associated with the secondary path; detecting an absence of the secondary overmodulation signal associated with the secondary path; and providing a notification of the absence of the secondary overmodulation signal.
Priority Claims (1)
| Number |
Date |
Country |
Kind |
| 98201797.2 |
May 1998 |
EP |
|
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application is a continuation of U.S. patent application Ser. No. 09/321,850 filed May 28, 1999 and entitled “Optical Communication System”. This application is based on European Patent Application No. 98201797.2 filed on May 29, 1998 and U.S. Provisional Application No. 60/087,442 filed on Jun. 1, 1998, the content of which is incorporated hereinto by reference.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60087442 |
Jun 1998 |
US |
Continuations (1)
|
Number |
Date |
Country |
| Parent |
09321850 |
May 1999 |
US |
| Child |
10428022 |
Apr 2003 |
US |