Claims
- 1. A method of controlling amplifier output power in an optical communications network, the method comprising:
for a first amplifier, determining a first transmission parameter associated with the output power of the first amplifier; for a second amplifier downstream from the first amplifier:
determining a second signal output power for the second amplifier; determining an amount of amplified spontaneous emission generated at the second amplifier; determining an output power for the second amplifier in response to the second signal output power, the first transmission parameter and the amount of amplified spontaneous emission generated at the second amplifier; and controlling output power of the second amplifier in response to the determined output power for the second amplifier.
- 2. The method of claim 1 wherein the first transmission parameter for the first amplifier is a composite express signal-to-noise ratio.
- 3. The method of claim 2 wherein the composite express signal-to-noise ratio is determined by:
determining a first signal output power for the first amplifier; determining a composite express output power for the first amplifier; and determining a composite express signal-to-noise ratio in response to the first signal output power and the composite express output power.
- 4. The method of claim 1 further comprising broadcasting the first transmission parameter to downstream amplifiers in the optical communications network.
- 5. The method of claim 1 further comprising broadcasting the first transmission parameter to upstream and downstream amplifiers in the optical communications network.
- 6. The method of claim 1 wherein said controlling output power of the second amplifier includes adding a power offset to provide for a service channel.
- 7. An optical communications network comprising:
a first amplifier; a processor associated with said first amplifier, said processor associated with said first amplifier determining a first transmission parameter associated with the output power of said first amplifier; a second amplifier downstream from said first amplifier a processor associated with said second amplifier, said processor associated with said second amplifier:
determining a second signal output power for said second amplifier; determining an amount of amplified spontaneous emission generated at said second amplifier; determining an output power for said second amplifier in response to the second signal output power, the first transmission parameter and the amount of amplified spontaneous emission generated at said second amplifier; and controlling output power of said second amplifier in response to the determined output power for said second amplifier.
- 8. The network of claim 7 wherein the first transmission parameter for said first amplifier is a composite express signal-to-noise ratio.
- 9. The network of claim 8 wherein the composite express signal-to-noise ratio is determined by:
determining a first signal output power for said first amplifier; determining a composite express output power for said first amplifier; and determining a composite express signal-to-noise ratio in response to the first signal output power and the composite express output power.
- 10. The network of claim 7 wherein said processor associated with said first amplifier broadcasts the first transmission parameter to downstream amplifiers in the optical communications network.
- 11. The network of claim 7 wherein said processor associated with said first amplifier broadcasts the first transmission parameter to upstream and downstream amplifiers in the optical communications network.
- 12. The network of claim 7 wherein said processor associated with said second amplifier controls output power of said second amplifier by adding a power offset to provide for a service channel.
- 13. The network of claim 7 wherein said processor associated with said first amplifier and said processor associated with said second amplifier are the same processor.
- 14. The network of claim 7 wherein said processor associated with said first amplifier and said processor associated with said second amplifier are separate processors.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims the benefit of U.S. provisional application serial No. 60/289,672, filed May 9, 2001, the entire contents of which are incorporated herein by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60289672 |
May 2001 |
US |