IP Library Granted Patent US 7,693,423
Granted Patent B2
US 7,693,423 · App. 10/517,671 · Granted Apr 6, 2010

Maximising power in optical communication networks

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Quick Facts
Patent No.
US 7,693,423
App. No.
10/517,671
Granted
Apr 6, 2010
Kind
B2
Abstract

The relative launch power of signals at an add/drop node transponder is controlled to maximize available power. Known values of signal bandwidth and likely noise in the signal path, for example, derived from the system manager, are used to control the launch power into the optical amplifier, in order to optimize the launch power accordingly.

Claims (22)

1. A method of controlling signal launch power of at least one optical signal in an add/drop node of an optical communication network, comprising the step of: pre-distorting the launch power of the at least one optical signal in accordance with a known value of a bandwidth of a modulation signal used to modulate the at least one optical signal, by passing the at least one pre-distorted optical signal through an optical amplifier of the add/drop node, and by comparing a signal derived from an output of the optical amplifier with a reference signal dependent on the known value of the bandwidth of the modulation signal used to modulate the at least one optical signal by using a comparator.

2. The method as claimed in claim 1 , wherein the pre-distorting step is performed by pre-distorting the launch power of the at least one optical signal in accordance with a known value of expected noise on a signal path of the at least one optical signal.

3. The method as claimed in claim 2 , wherein the known values are provided by management systems of the optical communication network.

4. The method as claimed in claim 2 , wherein the known values are provided by a network and connectivity information unit.

5. The method as claimed in claim 2 , wherein the known values are supplied by a supervisory channel.

6. The method as claimed in claim 2 , wherein the known value for expected noise on the signal path of the at least one optical signal is derived from a knowledge of a number and a type of the optical amplifier through which the at least one optical signal will pass.

7. The method as claimed in claim 1 , wherein the optical communication network carries an n channel multiplex.

8. The method as claimed in claim 1 , wherein the launch power of the at least one optical signal with an associated modulation signal of a higher bandwidth is pre-distorted to increase a signal level of the at least one optical signal compared to an optical signal with an associated modulation signal of a lower bandwidth.

9. The method as claimed in claim 2 , wherein the launch power of the at least one optical signal is pre-distorted to increase a signal level of the at least one optical signal when the expected noise on the signal path of the at least one optical signal through the network is higher compared to an optical signal having a lower than expected noise on its signal path through the network.

10. An add/drop node apparatus for controlling signal launch power of at least one optical signal in an optical communication network, comprising:

a) a launcher for launching the at least one optical signal onto the network;

b) means for pre-distorting the launch power of the at least one optical signal in accordance with a known value of a bandwidth of a modulation signal used to modulate the at least one optical signal;

c) an optical amplifier through which at least one pre-distorted optical signal is passed in use; and

d) the pre-distorting means including a comparator for comparing a signal derived from an output of the optical amplifier with a reference signal dependent on the known value of the bandwidth of the modulation signal used to modulate the at least one optical signal.

11. The apparatus as claimed in claim 10 , wherein the means for pre-distorting the launch power of the at least one optical signal is also operative for pre-distorting the launch power of the at least one optical signal in accordance with a known value of expected noise on a signal path of the at least one optical signal.

12. The apparatus as claimed in claim 11 , wherein the known values are provided in use by management systems of the optical communication network.

13. The apparatus as claimed in claim 12 , wherein the known values are provided by a network and connectivity information unit.

14. The apparatus as claimed in claim 12 , wherein the known values are supplied by a supervisory channel.

15. The apparatus as claimed in claim 11 , wherein the expected noise is derived from a number and a type of the optical amplifier through which the at least one optical signal will pass in the optical communication network.

16. The apparatus as claimed in claim 10 , wherein the optical communication network is adapted to carry an n channel multiplex.

17. The apparatus as claimed in claim 10 , wherein the pre-distorting means is operative for increasing a signal level of the at least one optical signal with an associated modulation signal of a higher bandwidth compared to an optical signal with an associated modulation signal of a lower bandwidth.

18. The apparatus as claimed in claim 11 , wherein the pre-distorting means is operative for increasing a signal level of the at least one optical signal having a higher than expected noise on its signal path through the network compared to an optical signal having a lower than expected noise on its signal path through the network.