Claims
- 1. A dispersion compensation system for use in an optical transmission system to compensate for signal distortion of an optical signal, the system comprising:
a first transceiver, the first transceiver for generating the optical signal; an optical line coupled to the first transceiver, the optical line transmitting the optical signal; a second transceiver coupled to the optical line, the second transceiver for receiving the optical signal; a plurality of amplifiers coupled to the optical line, wherein the amplifiers are spaced periodically throughout the optical line forming span distances, wherein the amplifiers amplify the optical signal and wherein the span distances are variable; a plurality of dispersion compensations modules coupled to the plurality of amplifiers, the dispersion compensation modules comprising:
a coarse granularity module, wherein the at least one coarse granularity module has a resolution of at least 5 km; a connector connected to the coarse granularity module; a fine granularity module connected to the connector, wherein the fine granularity module has a resolution of at least 1 km; and wherein the coarse granularity module and the fine granularity module are connected by a single connection and the coarse granularity module and the fine granularity module correct the dispersion of the optical signal accumulated in the variable span distance.
- 2. The system of claim 1, wherein the amplifiers include in-line amplifiers.
- 3. The system of claim 1, wherein the coarse granularity module and the fine granularity module are interconnected upon deployment in the field.
- 4. The system of claim 1, wherein the coarse granularity module and the fine granularity module are interconnected prior to deployment in the field.
- 5. The system of claim 1, wherein the coarse granularity module and the fine granularity module are interconnected upon manufacture.
- 6. The system of claim 1, wherein the coarse granularity module is a dispersion compensating fiber.
- 7. The system of claim 1, wherein the coarse granularity module is a higher order mode device.
- 8. The system of claim 1, wherein the coarse granularity module is a chirped fiber bragg grating.
- 9. The system of claim 1, wherein the coarse granularity module compensates for the dispersion slope of the fiber.
- 10. The system of claim 1, wherein the dispersion compensation modules further comprise a first memory device coupled to the coarse granularity module; a second memory device coupled to the fine granularity (the first and second memory devices can be electronically read).
- 11. The system of claim 1, wherein the coarse granularity module overcompensates the dispersion of the optical signal accumulated in the variable span and the at least one fine granularity module compensates for the overcompensation of the coarse granularity modules.
- 12. The system of claim 10, wherein the fine granularity module is a standard single mode fiber.
- 13. The system of claim 10, wherein the fine granularity module is a non-zero dispersion shifted fiber.
- 14. The system of claim 10, wherein the fine granularity module is a silica-core fiber.
- 15. The system of claim 1, wherein the coarse granularity module has a resolution of at least 10 km.
- 16. The system of claim 1, wherein the fine granularity module has a negative resolution.
- 17. The system of claim 1 further comprising:
a supervisory channel coupled to the plurality of in-line amplifiers; a plurality of controllers resident in at least a portion of the plurality of in-line amplifiers, each controller coupled to the supervisory channel; and wherein the dispersion compensation modules further comprises:
a first memory device coupled to the coarse granularity module; a second memory device coupled to the fine granularity module; and wherein the first and second memory devices are in communication with one of the plurality of controllers.
- 18. The system of claim 16 wherein the first and second memory devices include electronically erasable programmable read only memory.
- 19. The system of claim 16 wherein the first and second memory devices store identifiers.
- 20. The system of claim 18 wherein the identifiers include unique identifiers.
- 21. The system of claim 16 wherein the plurality of controllers receive and transmit in-line amplifier control data, including control data for the dispersion compensation modules.
- 22. The system of claim 16 wherein the first and second memory devices store data prior to installation in the optical transmission system.
- 23. A method of dispersion compensation of an optical transmission system including an optical line, to compensate for signal distortion of an optical signal using a coarse granularity module, a fine granularity module and a connector, the method comprising the steps of:
identifying the location of each amplifier of the optical transmission system; identifying each of the variable span distances, wherein the variable span distances are calculated as the distance between amplifiers; determining the dispersion of the variable span distances; wherein determining the dispersion comprising the steps of:
identifying the fiber type of the optical line spanning the variable span distance; and calculating the dispersion based upon the fiber type and the length of the variable span distance; identifying the coarse granularity modules according to the calculated dispersion; identifying the fine granularity module according to the calculated dispersion; interconnecting the coarse and fine granularity modules with the connector to form a dispersion compensation module; and interconnecting the dispersion compensation module with the variable span distance to compensate for the dispersion of the variable span distance.
- 24. The method of claim 22, wherein the step of determining the dispersion compensation per distance of the coarse granularity modules includes determining the dispersion compensation in 10 km sections.
- 25. The method of claim 22, wherein the step of determining the dispersion compensation per distance of the coarse granularity modules includes determining the dispersion compensation in 5 km sections.
- 26. The method of claim 22, wherein the step of determining the dispersion compensation per distance of the fine granularity modules includes determining the dispersion compensation for 1 km sections.
- 27. The method of claim 22, wherein the step of interconnecting the coarse and fine granularity modules includes interconnecting the coarse and fine granularity modules upon deployment in the field.
- 28. The method of claim 22, wherein the step of interconnecting the coarse and fine granularity modules includes interconnecting the coarse and fine granularity modules prior to deployment in the field.
- 29. The method of claim 22, wherein the step of interconnecting the coarse and fine granularity modules includes interconnecting the coarse and fine granularity modules upon manufacture.
- 30. The method of claim 22, wherein the step of determining the dispersion compensation per distance of the fine granularity modules includes determining the dispersion compensation for negative sections.
- 31. A method of inventory reduction of dispersion compensation fibers used as dispersion compensation modules in an optical network including an optical line, the method comprising the steps of:
determining a coarse granularity of a first dispersion compensation fiber; determining a fine granularity of a second dispersion compensation fiber; determining necessary lengths of the coarse and fine granularity fibers, wherein the combination of one coarse granularity fiber and one fine granularity fiber span any desired distance; and stock the necessary lengths of the coarse and fine granularity fibers.
- 32. The method of claim 30, wherein the desired distance is the maximum distance between two amplification points in the optical network.
- 33. The method of claim 30, wherein the desired distance is 100 km.
- 34. The method of claim 30, wherein the necessary lengths of the coarse granularity fibers have a resolution of 10 km.
- 35. The method of claim 30, wherein the necessary lengths of the coarse granularity fibers have a resolution of 5 km.
- 36. The method of claim 30, wherein the necessary lengths of the fine granularity fibers have a resolution of 1 km.
- 37. The method of claim 30, wherein the necessary lengths of the fine granularity fibers have a negative resolution.
- 38. The method of claim 30, wherein the coarse granularity compensates for the dispersion slope of the optical line of the optical network.
- 39. The method of claim 30 further comprising:
determining a unique identifier for each length of coarse and fine granularity fibers; and storing the unique identifier in a memory coupled to the coarse and fine granularity fibers.
- 40. The method of claim 30 further comprising:
determining a unique identifier for each coarse and fine granularity fibers; and storing the unique identifier in a memory coupled to the coarse and fine granularity fibers.
- 41. A dispersion compensation system for use in an optical transmission system to
compensate for optical signal distortion, the dispersion compensation system comprising: a coarse granularity module; a first memory device coupled to the coarse granularity module, the first memory device for uniquely identifying the coarse granularity module; a connected to the coarse granularity module; a fine granularity module connected to the connector; a second memory device coupled to the fine granularity module, the second memory device for uniquely identifying the fine granularity module; wherein the coarse granularity module and the fine granularity module are connected by a single connector and compensate the distortion of the optical signal.
- 42. The dispersion compensation system of claim 40, wherein the coarse granularity module has a resolution of at least 5 km.
- 43. The dispersion compensation system of claim 40, wherein the coarse granularity module has a resolution of at least 10 km.
- 44. The dispersion compensation system of claim 40, wherein the fine granularity module has a resolution of at least 1 km.
- 45. The dispersion compensation system of claim 40, wherein the fine granularity module has a negative resolution.
- 46. The dispersion compensation system of claim 40, wherein the first and second memory devices include programmable read only memory.
- 47. The dispersion compensation system of claim 45, wherein the first and second memory devices include electronically erasable programmable read only memory.
- 48. A tag for a dispersion compensation module comprising a length of dispersion compensation fiber, a memory device associated with a length of dispersion compensation fiber programmed with information related to the dispersion compensation fiber and a controller operably connected to the memory device programmed to read in the information contained therein.
- 49. The tag of claim 48 when every device is an electrical programmable read only memory (EPROM).
- 50. The tag of 48 wherein the connection between the control memory device is optical.
- 51. The tag of 48 wherein the connection between the control memory device is electrical.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims priority to Provisional Application Serial No. 60/372,845, entitled “CHROMATIC DISPERSION COMPENSATION SYSTEM AND METHOD”, by Michael H. Eiselt, et al., filed Apr. 16, 2002.
Provisional Applications (1)
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Number |
Date |
Country |
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60372845 |
Apr 2002 |
US |