Claims
- 1. A field reconfigurable muxponder for use in an optical transport system, comprising:
one or more tributary cards, each tributary card adapted to receive an optical data signal and operable to condition the optical data signal into an intermediate data signal constituted in accordance with a tributary interface format; and a multiplexing component adapted to receive the optical data signals from the tributary cards and operable to combine the optical data signals into an optical system signal, wherein the tributary cards and the multiplexing component are integral to one line card.
- 2. The field reconfigurable muxponder of claim 1 wherein each tributary card further comprises a transceiver component adapted to receive the optical data signal and operable to convert the optical data signal into an electrical data signal, and a protocol-specific component adapted to receive the electrical signal and operable to condition the electrical signal into an intermediate data signal.
- 3. The field reconfigurable muxponder of claim 1 wherein the tributary interface format is further defined as an Optical Internetworking Forum (OIF) SFI-4 standard.
- 4. The field reconfigurable muxponder of claim 2 wherein the multiplexing component adapted to receive the intermediate data signals from the tributary cards and is operable to combine the intermediate data signals into an electrical system signal.
- 5. The field reconfigurable muxponder of claim 4 wherein the multiplexing component combines the intermediate data signals using a time-domain multiplexing scheme.
- 6. The field reconfigurable muxponder of claim 4 further comprises a transceiver component adapted to receive the electrical system signal and to convert the electrical system signal into the optical system signal which may be launched at a predefined wavelength into the optical transport system.
- 7. A field reconfigurable muxponder for use in an optical transport system, comprising:
a first tributary card adapted to receive a first optical data signal constituted in accordance with a first protocol and operable to condition the first optical data signal into a first intermediate data signal constituted in accordance with a tributary interface format, a second tributary card adapted to receive a second optical data signal constituted in accordance with a second protocol that is different than the first protocol, and operable to condition the second optical data signal into a second intermediate data signal constituted in accordance with the tributary interface format; and a chassis adapted to receive the first and second tributary cards and operable to output an optical system signal that embodies the first and second intermediate data signals.
- 8. The field reconfigurable muxponder of claim 7 wherein each of the first and second tributary cards operably connected via a card slot to the chassis.
- 9. The field reconfigurable muxponder of claim 7 wherein at least one of the first and second tributary card is adapted to receive one or more optical fiber cables on an accessible faceplate thereof.
- 10. The field reconfigurable muxponder of claim 7 wherein the first tributary card further comprises a transceiver component adapted to receive the first optical data signal and operable to convert the first optical data signal into a first electrical data signal, and a protocol-specific component adapted to receive the first electrical signal and operable to condition the first electrical signal into a first intermediate data signal.
- 11. The field reconfigurable muxponder of claim 7 wherein the tributary interface format is further defined as an Optical Internetworking Forum (OIF) SFI-4 standard.
- 12. The field reconfigurable muxponder of claim 7 wherein the chassis further comprises a multiplexing component adapted to receive the first and second intermediate data signals and operable to combine the first and second intermediate data signals into an electrical system signal, and a transceiver component adapted to receive the electrical system signals and operable to convert the electrical system signal into the optical system signal which is launched at a predefined wavelength into an optical transport line.
- 13. A method for field reconfiguring a muxponder residing in an optical transport system, comprising:
providing at least one tributary card operably connected to a chassis, thereby forming a field reconfigurable muxponder; removing the tributary card from the chassis, where the tributary card is adapted to receive an optical data signal constituted in accordance with a first protocol; and inserting a replacement tributary card into the chassis, where the replacement tributary card is adapted to receive an optical data signal constituted in accordance with a second protocol.
- 14. The method of claim 13 further comprises generating an optical system signal that embodies the optical data signal received by the chassis.
- 15. The method of claim 13 further comprises outputting an optical system signal from the chassis when the tributary card is removed from the chassis.
- 16. The method of claim 13 wherein the tributary card is operable to condition the optical data signal into an intermediate data signal constituted in accordance with a tributary interface format.
- 17. The method of claim 16 wherein the chassis is adapted to receive the optical data signal from the tributary card and operable to output an optical system signal that embodies the intermediate data signal.
- 18. A method for field reconfiguring a muxponder residing in an optical transport system, comprising:
providing at least one tributary card operably connected to a chassis of the muxponder, where the tributary card is adapted to receive a first optical data signal removing the tributary card from the chassis; and outputting an optical system signal from the chassis when the tributary card is removed from the chassis.
- 19. The method of claim 18 further comprises inserting a replacement tributary card into the chassis, where the replacement tributary card is adapted to receive a second optical data signal constituted in accordance with a protocol different than the first optical data signal.
- 20. The method of claim 18 wherein the step of outputting an optical system signal further comprises:
detecting presence of optical data signals received by the chassis, where the chassis is adapted to receive a predefined number of optical data signal; generating a surrogate signal for each optical data signal that is not present at the chassis; and generating an optical system signal which embodies generated surrogate signals and optical data signals present at the chassis.
- 21. A method for field reconfiguring a muxponder residing in an optical transport system, comprising:
providing a tributary card operably connected to a chassis of the muxponder, where the tributary card includes at least one transceiver component which is adapted to receive an optical data signal removing the transceiver component from the tributary card; outputting an optical system signal from the chassis when the transceiver component card is removed from the tributary card; and inserting a replacement transceiver component onto the tributary card.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims the benefit of U.S. Provisional Application Serial No. 60/353,292 which was filed on Oct. 25, 2002 and is incorporated by reference herein.
Provisional Applications (1)
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Number |
Date |
Country |
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60353292 |
Oct 2001 |
US |