Claims
- 1. An optical power managed network node for processing dense wavelength division multiplexed signals comprising:
a dense wavelength division multiplexing device for combining a plurality of narrowband optical signals into a multiplexed polychromatic optical signal; a wavelength-selective optical power detector for detecting the power of each of the plurality of narrowband optical signals combined into the multiplexed polychromatic optical signal; and a plurality of attenuators for attenuating the power of at least one of the plurality of narrowband optical signals based upon the detected power of each of the plurality of narrowband optical signals.
- 2. The optical power managed network node as defined in claim 1, further comprising:
an adjustable power amplifier for adjustably amplifying the power of the multiplexed polychromatic optical signal based upon the detected power of each of the plurality of narrowband optical signals.
- 3. The optical power managed network node as defined in claim 1, wherein the at least one of the plurality of narrowband optical signals is attenuated so as to equalize the power in each of the plurality of narrowband optical signals.
- 4. The optical power managed network node as defined in claim 1, wherein the at least one of the plurality of narrowband optical signals is attenuated prior to being combined into the multiplexed polychromatic optical signal.
- 5. The optical power managed network node as defined in claim 1, wherein the plurality of narrowband optical signals is a first plurality of narrowband optical signals, further comprising:
a switching device for switching a second plurality of narrowband optical signals according to a predetermined signal routing scheme, wherein the second plurality of narrowband optical signals constitutes at least a portion of the first plurality of narrowband optical signals.
- 6. The optical power managed network node as defined in claim 5, wherein at least one of the second plurality of narrowband optical signals is switched such that the at least one switched narrowband optical signal is routed to a local sub-node.
- 7. The optical power managed network node as defined in claim 5, wherein at least one of the second plurality of narrowband optical signals is switched such that the at least one switched narrowband optical signal is routed through the optical power managed network node.
- 8. The optical power managed network node as defined in claim 7, wherein the switching device receives at least one of a third plurality of narrowband optical signals for routing through the optical power managed network node.
- 9. The optical power managed network node as defined in claim 8, wherein the first plurality of narrowband optical signals comprises those of the second plurality of narrowband optical signals and the third plurality of narrowband optical signals that are routed through the optical power managed network node.
- 10. The optical power managed network node as defined in claim 8, further comprising:
a controller for controlling the power of the at least one of the third plurality of narrowband optical signals based upon the detected power of each of the plurality of narrowband optical signals.
- 11. The optical power managed network node as defined in claim 5, wherein the multiplexed polychromatic optical signal is a first multiplexed polychromatic optical signal, further comprising:
a demultiplexing device for separating a second multiplexed polychromatic optical signal into the second plurality of narrowband optical signals.
- 12. The optical power managed network node as defined in claim 11, wherein the wavelength-selective optical power detector also detects the power of each of the second plurality of narrowband optical signals contained within the second multiplexed polychromatic optical signal.
- 13. The optical power managed network node as defined in claim 11, wherein the wavelength-selective optical power detector is a first wavelength-selective optical power detector, further comprising:
a second wavelength-selective optical power detector for detecting the power of each of the second plurality of narrowband optical signals contained within the second multiplexed polychromatic optical signal.
- 14. A method for processing dense wavelength division multiplexed signals in an optical power managed network node, the method comprising the steps of:
combining a plurality of narrowband optical signals into a multiplexed polychromatic optical signal; detecting the power of each of the plurality of narrowband optical signals combined into the multiplexed polychromatic optical signal; and attenuating the power of at least one of the plurality of narrowband optical signals based upon the detected power of each of the plurality of narrowband optical signals.
- 15. The method as defined in claim 14, further comprising the step of:
adjustably amplifying the power of the multiplexed polychromatic optical signal based upon the detected power of each of the plurality of narrowband optical signals.
- 16. The method as defined in claim 14, wherein the at least one of the plurality of narrowband optical signals is attenuated so as to equalize the power in each of the plurality of narrowband optical signals.
- 17. The method as defined in claim 14, wherein the at least one of the plurality of narrowband optical signals is attenuated prior to being combined into the multiplexed polychromatic optical signal.
- 18. The method as defined in claim 14, wherein the plurality of narrowband optical signals is a first plurality of narrowband optical signals, further comprising the step of:
switching a second plurality of narrowband optical signals according to a predetermined signal routing scheme, wherein the second plurality of narrowband optical signals constitutes at least a portion of the first plurality of narrowband optical signals.
- 19. The method as defined in claim 18, wherein at least one of the second plurality of narrowband optical signals is switched such that the at least one switched narrowband optical signal is routed to a local sub-node.
- 20. The method as defined in claim 18, wherein at least one of the second plurality of narrowband optical signals is switched such that the at least one switched narrowband optical signal is routed through the optical power managed network node.
- 21. The method as defined in claim 20, further comprising the step of:
receiving at least one of a third plurality of narrowband optical signals for routing through the optical power managed network node.
- 22. The method as defined in claim 21, wherein the first plurality of narrowband optical signals comprises those of the second plurality of narrowband optical signals and the third plurality of narrowband optical signals that are routed through the optical power managed network node.
- 23. The method as defined in claim 21, further comprising the step of:
controlling the power of the at least one of the third plurality of narrowband optical signals based upon the detected power of each of the plurality of narrowband optical signals.
- 24. The method as defined in claim 18, wherein the multiplexed polychromatic optical signal is a first multiplexed polychromatic optical signal, further comprising the step of:
separating a second multiplexed polychromatic optical signal into the second plurality of narrowband optical signals.
- 25. The method as defined in claim 24, wherein the step of detecting includes detecting the power of each of the second plurality of narrowband optical signals contained within the second multiplexed polychromatic optical signal.
- 26. The method as defined in claim 24, further comprising the step of:
detecting the power of each of the second plurality of narrowband optical signals contained within the second multiplexed polychromatic optical signal.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This patent application claims priority to U.S. Provisional Patent Application No. 60/187,101, filed Mar. 6, 2000, which is hereby incorporated by reference herein in its entirety.
[0002] This patent application is related to U.S. patent application Ser. No. 09/578,721, filed May 26, 2000, which is hereby incorporated by reference herein in its entirety.
Provisional Applications (1)
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Number |
Date |
Country |
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60187101 |
Mar 2000 |
US |