Claims
- 1. A system for use in a wavelength-division multiplexed (WDM) optical switching network, the system comprising:
a control interface unit (CIF); a photonic burst switch (PBS) unit; a plurality of tunable wavelength converters (TWCs); an optical demultiplexer unit (DMUX) coupled to the PBS unit via the plurality of TWCs, the DMUX to route an optical label signal and an associated optical data signal to the CIF and the PBS unit, respectively, the optical data signal being a time division multiplexed (TDM) signal; an optical multiplexer unit (MUX) coupled to the PBS unit and couplable to a plurality of optical output lines that provide propagation paths for a plurality of TDM channels; and a control unit, coupled to the PBS unit and the plurality of TWCs, to cause the PBS unit to route the optical data signal to a first TDM channel of the plurality of TDM channels via the MUX based on routing information contained in the optical control signal.
- 2. The system of claim 1 wherein, the control unit to cause a TWC of the plurality of TWCs to provide a second data signal having a wavelength different from that of the optical data signal when the first TDM channel is not available, the second data signal containing at least a first portion of data contained in the optical data signal, the optical data signal arriving at the system after the control unit configures the TWC.
- 3. The system of claim 2 wherein the control unit to drop one or more packets of the optical data signal when the optical data signal arrives at the system before the control unit configures the TWC.
- 4. The system of claim 3 wherein the control unit further provides an indication to the optical data signal's source to resend the dropped packets.
- 5. The system of claim 1 wherein a TWC of the plurality of TWCs includes:
a first coupler; an optical delay unit coupled to the first coupler; a second coupler coupled to an input port of the PBS unit; a tunable optical filter (TOF) coupled to the first coupler, the optical delay unit, and the second coupler; a photodetector coupled to a spare output port of the PBS unit; a buffer coupled to the photodetector; a tunable laser coupled to the buffer and the second coupler, the tunable laser to output an optical signal having a wavelength different from that of the optical data signal; and a processor coupled to the optical delay unit, the TOF, the tunable laser and the buffer, the processor to configure the PBS unit to route the first portion of the optical data signal to the spare output port of the PBS unit when the first TDM channel is not available.
- 6. The system of claim 5 further comprising a circulator to couple the first coupler, the second coupler and the optical delay unit.
- 7. The system of claim 5 wherein the optical delay unit comprises a Fabry-Perot etalon.
- 8. The system of claim 5 wherein the processor is part of the control unit.
- 9. The system of claim 5 wherein the tunable optical filter comprises a semiconductor phase shifting element having alternating layers of materials having different refractive indices.
- 10. The system of claim 5 wherein the buffer is configurable to electrically store data of the first data portion, the electrically stored data being used to modulate the optical signal outputted by the tunable laser.
- 11. The system of claim 5 wherein the TOF is configured to reflect a second portion of the optical data signal when the first TDM channel is not available.
- 12. The system of claim 11 wherein the reflected second portion of the optical data signal propagates through the circulator to the optical delay unit, which outputs the delayed second portion of the optical data signal to the TOF via the first coupler.
- 13. The system of claim 1 wherein when the system has a fault, an indication is provided to the WDM optical switching network which in response thereto selectively reroutes the optical label and optical data signals to bypass the faulty system.
- 14. A method for use in a wavelength-division multiplexed (WDM) optical switching network, the method comprising:
receiving an input optical signal with a plurality of time division multiplexed (TDM) channels, the input optical signal including a label signal and a data signal respectively in a first TDM channel and a second TDM channel of the plurality of TDM channels; converting the label signal to an electrical signal; determining a third TDM channel of an output optical signal for sending the data signal based on routing information contained in the label signal; determining whether the third TDM channel is available; routing at least a portion of the data signal to the third TDM channel of an output optical signal when the third TDM channel is available; and providing a second data signal having a wavelength different from that of the data signal when the third TDM channel is not available, the second data signal containing at least a first portion of the data contained in the data signal; and sending the data signal in a fourth TDM channel of the output optical signal.
- 15. The method of claim 14 wherein providing the second data signal includes:
converting the first portion of the data signal to an electrical signal; generating a second optical signal with a wavelength different from that of the data signal; and modulating the second optical signal using the electrical signal.
- 16. The method of claim 14 further comprising delaying a second portion of the data signal using an optical delay unit and sending the delayed second portion of the data signal in the third TDM channel when the third TDM channel becomes available.
- 17. The method of claim 14 further comprising dropping one or more packets of the data signal when the data signal arrives before the second data signal can be provided.
- 18. The method of claim 14 further comprising providing an indication that node of the WDM optical switching network has a fault, the WDM optical switching network being configurable to reroute the optical label and optical data signal to bypass the faulty node.
- 19. A system for use in a wavelength-division multiplexed (WDM) optical switching network, the system comprising:
a photonic burst switch (PBS) unit; an optical demultiplexer unit (DMUX) coupled to the PBS unit, the DMUX to route control signal and optical data signals of a received optical signal to the CIF and the PBS unit, respectively, the optical data signal being a time division multiplexed (TDM) signal; a plurality of variable time-delay optical buffers (VDOBs) coupled to the DMUX and the PBS unit; an optical multiplexer unit (MUX) coupled to the PBS unit and couplable to a plurality of optical output lines that provide propagation paths for a plurality of TDM channels; and a control unit, coupled to the PBS unit and the plurality of VDOBs, to cause the PBS unit to route the optical data signal to a first TDM channel of the plurality of TDM channels via the MUX based on routing information contained in the optical control signal.
- 20. The system of claim 19 wherein, the control unit to cause a VDOB of the plurality of VDOBs to delay the optical data signal when the first TDM channel is not available and the optical data signal arrives at the system after the control unit configures the VDOB.
- 21. The system of claim 20 wherein the control unit to drop one or more packets of the optical data signal when the optical data signal arrives at the system before the control unit configures the VDOB.
- 22. The system of claim 19 wherein a VDOB of the plurality of VDOBs includes:
a coupler; an optical delay line unit having a plurality of delay lines of different lengths; an optical filter coupled to the coupler, the optical delay line unit, and the PBS unit; and a processor coupled to the optical delay line unit and the optical filter, wherein when the first TDM channel is not available, the processor to configure the optical filter to reflect the data signal and to configure the optical delay line unit to output an optical signal that was propagated in a selected delay line of the plurality of delay lines.
- 23. The system of claim 22 wherein the VDOB further comprises a circulator configurable to couple the coupler, optical filter and the optical delay line unit.
- 24. The system of claim 22 wherein the optical delay line unit further includes:
an optical splitter coupled to the TOF and to the plurality of delay lines; an optical combiner having an input port coupled to the plurality of delay lines; an optical amplifier coupled to an output port of the optical combiner; a laser coupled to the processor, the processor to cause the laser to output a control laser signal during a time period corresponding to a selected delay period; and a bistable optical device (BOD) coupled to the optical amplifier and the coupler, the BOD to output a signal as a function of an output signal of the optical combiner and the control laser signal.
- 25. The system of claim 24 wherein when the first TDM channel is not available, the processor to determine when the first TDM channel will become available and to select a delay period sufficient to delay the data signal until the first TDM channel becomes available.
- 26. A wavelength-division multiplexed (WDM) optical switching network, comprising:
an ingress module; an egress module; and a plurality of core modules coupled to the ingress and egress modules, wherein each core module of the plurality of core modules includes:
a switch unit having a plurality of tunable wavelength converters (TWCs), the switch unit configurable to respectively route an optical control signal and an associated optical data signal received via a plurality of optical input lines to the optical receiver and to a plurality of output lines providing propagation paths for a plurality of TDM channels, the optical data signal being a time division multiplexed (TDM) signal, and a control unit coupled to the switch unit, wherein the control unit is configurable to cause the switch unit to route the optical data signal to a first TDM channel of the plurality of TDM channels based on routing information contained in the control signal.
- 27. The network of claim 26 wherein the control unit is configurable to perform optical-electrical-optical conversion of the optical control signal.
- 28. The network of claim 26 wherein a TWC of the plurality of TWCs is configurable to cause at least a first portion of the optical data signal to be propagated on an optical signal of a wavelength different from that of the optical data signal when the first TDM channel is not available and the optical data signal is received after the TWC is configured.
- 29. The network of claim 28 wherein one or more packets of the optical data signal are dropped when the optical data signal is received before the TWC is configured.
- 30. The network of claim 28 wherein a TWC of the plurality of TWCs includes:
a first coupler; an optical delay unit coupled to the first coupler; a second coupler coupled to an input port of the PBS unit; a TOF coupled to the optical delay unit, the first coupler, and the second coupler; a photodetector coupled to a spare output port of the PBS unit; a buffer coupled to the photodetector; a tunable laser coupled to the buffer and the second coupler, the tunable laser to output an optical signal having a wavelength different from that of the optical data signal; and a processor coupled to the optical delay unit, the TOF, the tunable laser and the buffer, the processor to configure the PBS unit to route the first portion of the data signal to the spare output port of the PBS unit when the first TDM channel is not available.
- 31. The network of claim 30 wherein the optical filter is configured to reflect a second portion of the data signal when the first TDM channel is not available.
- 32. The network of claim 31 wherein the reflected second portion of the data signal propagates through the circulator to the optical delay unit, which outputs the delayed second portion of the optical data signal to the optical filter via the first coupler.
- 33. The network of claim 26 wherein when a core module of the plurality of core modules has a fault, an indication is provided to the WDM optical switching network which in response thereto selectively reroutes the optical label and optical data signals to bypass the faulty system.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] The present application is a continuation-in-part of U.S. patent application Ser. No. 10/126,091, filed Apr. 17, 2002.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
10126091 |
Apr 2002 |
US |
Child |
10183111 |
Jun 2002 |
US |