Claims
- 1. An apparatus for use in a wavelength-division multiplexed (WDM) photonic burst switched (PBS) network, the apparatus comprising:
a first interface to transfer information from a network other than the PBS network; a flow classifier to classify information received via the first interface; a flow manager to selectively output information received via the flow classifier; and an ingress PBS component to transmit control and data information over the PBS network via an optical switch using information from the flow manager.
- 2. The apparatus of claim 1 further comprising an egress PBS component to provide information sent to apparatus via the PBS network to the flow classifier.
- 3. The apparatus of claim 1 wherein the flow manager is further to selectively provide information received via the flow classifier to the first interface.
- 4. The apparatus of claim 1 further comprising an address checker to determine whether information from the flow classifier is addressed to the apparatus.
- 5. The apparatus of claim 1 wherein the ingress PBS component further comprises:
a data burst assembler to form a data burst from information received from the flow manager; a data burst scheduler to schedule transmission of the data burst formed by the data burst assembler; an offset time manager to provide a time delay between transmission of the control burst and transmission of the data burst using information from the data burst scheduler; a control burst builder to form a control burst using information from the data burst scheduler and the offset time manager; and a burst framer to frame the control and data burst from the data burst assembler and the control burst builder.
- 6. The apparatus of claim 2 wherein the egress PBS component further comprises:
a burst de-framer to de-frame control and data bursts received via the PBS network; a control burst processing component to process control burst information from the burst de-framer; a data burst re-assembler to process data burst information from the burst de-framer; and a data demultiplexer to demultiplex processed data burst information from the data burst re-assembler.
- 7. A method for use in a wavelength-division multiplexed (WDM) photonic burst switched (PBS) network, the method comprising:
receiving information from a first network via first interface; and selectively transmitting control and data bursts derived from the received information over the PBS network via an optical switch in response to a determination that the received information's destination is another network coupled to the PBS network.
- 8. The method of claim 7 further comprising determining a forward equivalent class (FEC) of the received information if the received information has an associated FEC.
- 9. The method of claim 8 wherein selectively transmitting control and data bursts further comprises selectively transmitting control and data bursts derived from the received information over the PBS network responsive to the received information's FEC.
- 10. The method of claim 8 further comprising selectively transmitting information derived from the received information to the first network via to the first interface responsive to received information's destination address if the received information does not have an associated FEC.
- 11. The method of claim 7 wherein selectively transmitting control and data bursts comprises:
assembling a data burst from the received information; scheduling transmission of the data burst; building a control burst based on the assembled data burst and scheduled transmission; framing and transmitting the control burst over the PBS network; and framing and transmitting the data burst over the PBS network according to the transmission schedule.
- 12. The method of claim 11 wherein building a control burst further comprises determining a delay between transmission of the control burst and transmission of the data burst.
- 13. A machine-readable medium to provide instructions, which when executed by a machine, cause the machine to perform operations for use in a wavelength-division multiplexed (WDM) photonic burst switched (PBS) network, the operations comprising:
receiving information from a first interface; and selectively transmitting control and data bursts derived from the received information over the PBS network via an optical switch in response to a determination that the received information's destination is the coupled to the PBS network.
- 14. The machine-readable medium of claim 13 to further provide instructions, which when executed by the machine, cause the machine to perform operations comprising:
determining a forward equivalent class (FEC) of the received information if the received information has an associated FEC.
- 15. The machine-readable medium of claim 13 to further provide instructions, which when executed by the machine, cause the machine to perform operations comprising:
selectively transmitting information derived from the received information over the first interface responsive to received information's destination address when the received information does not have an associated FEC
- 16. The machine-readable medium of claim 13 to further provide instructions, which when executed by the machine, cause the machine to perform operations comprising:
assembling a data burst from the received information; scheduling transmission of the data burst; building a control burst based on the assembled data burst and scheduled transmission; framing and transmitting the control burst over the PBS network; and framing and transmitting the data burst over the PBS network according to the transmission schedule.
- 17. The machine-readable medium of claim 16 wherein the operation of building a control burst further comprises determining a delay between transmission of the control burst and transmission of the data burst.
- 18. A method for use in a wavelength-division multiplexed (WDM) photonic burst switched (PBS) network, the method comprising:
receiving a control burst from the PBS network; de-framing the control burst; receiving a data burst associated with the received control burst from the PBS network; de-framing the data burst; and demultiplexing data from the de-framed data burst.
- 19. The method of claim 18 further comprising determining a forward-equivalent class of the demultiplexed data if the received demultiplexed data has an associated FEC.
- 20. The method of claim 18 further comprising re-assembling data information if the received data burst is a fragmented data burst.
- 21. A machine-readable medium to provide instructions, which when executed by a machine, cause the machine to perform operations for use in a wavelength-division multiplexed (WDM) photonic burst switched (PBS) network, the operations comprising:
receiving a control burst from the PBS network; de-framing the control burst; receiving a data burst associated with the received control burst from the PBS network; de-framing the data burst; and demultiplexing data from the dc-framed data burst.
- 22. The machine-readable medium of claim 21 to provide further instructions, which when executed by the machine, cause the machine to perform operations comprising selectively determining a forward-equivalent class of the demultiplexed data.
- 23. The machine-readable medium of claim 21 to provide further instructions, which when executed by the machine, cause the machine to perform operations comprising re-assembling data information if the received data burst is a fragmented data burst.
- 24. A system comprising:
a first network; and a photonic burst switched (PBS) network coupled to the first network, the PBS network further comprising an edge node that includes;
a first interface to transfer information from the first network; a flow classifier to classify information received the first interface; a flow manager to selectively output information received via the flow classifier; and an ingress PBS component to transmit control and data information over the PBS network via an optical switch using information from the flow manager.
- 25. The system of claim 24 wherein the edge node further comprises an egress PBS component to provide information sent to apparatus via the PBS network to the flow classifier.
- 26. The system of claim 24 wherein the flow manager is further to selectively provide information received via the flow classifier to the first interface.
- 27. The system of claim 24 wherein the edge node further comprises an address checker to determine whether information from the flow classifier is addressed to the apparatus.
- 28. The system of claim 24 wherein the ingress PBS component further comprises:
a data burst assembler to form a data burst from information received from the flow manager; a data burst scheduler to schedule transmission of the data burst formed by the data burst assembler; an offset time manager to provide a delay between transmission of the control burst and transmission of the data burst using information from the data burst scheduler; a control burst builder to form a control burst using information from the data burst scheduler and the offset time manager; and a burst framer to frame the control and data burst from the data burst assembler and the control burst builder.
- 29. The system of claim 25 wherein the egress PBS component further comprises:
a burst de-framer to de-frame control and data bursts received via the PBS network; a control burst processing component to process control burst information from the burst de-framer; a data burst re-assembler to process data burst information from the burst de-framer; and a data demultiplexer to demultiplex processed data burst information from the data burst re-assembler.
- 30. The system of claim 25 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.
- 31. An apparatus for use in a wavelength-division multiplexed (WDM) photonic burst switched (PBS) network, the apparatus comprising:
an optical-electrical (O-E) interface to receive an optical control burst via the PBS network; a control burst de-framer to de-frame optical burst information received from the O-E interface; a control burst processing component to determine bandwidth reservation information from the de-framed optical burst information; a PBS switch controller to determine configuration settings for an optical switch using the bandwidth reservation information; a control burst re-builder to rebuild the control burst after being processed by the control burst processing component; a control burst framer to frame the rebuilt burst from the control burst re-builder; and an electrical-optical (E-O) interface to transmit the framed control burst over the PBS network.
- 32. The apparatus of claim 31 further comprising a contention resolver to provide an alternative for handling a data burst associated with the received control burst when the reserved bandwidth is unavailable.
- 33. The apparatus of claim 31 further comprising a resource manager to provide information on resources available in the PBS network to the control burst re-builder.
- 34. A method for use in a wavelength-division multiplexed (WDM) photonic burst switched (PBS) network, the method comprising:
converting an optical control burst from the PBS network into an electrical control burst; de-framing the electrical control burst; determining bandwidth reservation information from the de-framed control burst; determining configuration settings for an optical switch responsive to the bandwidth reservation information, the optical switch switching an optical data burst associated with the control burst, the optical data burst received from the PBS network; rebuilding the control burst after processing the bandwidth reservation information; framing the rebuilt control burst; and transmitting another optical control burst over the PBS network containing the information of the framed rebuilt control burst.
- 35. The method of claim 34 further comprising determining an alternative for handling the optical data burst received from the PBS network when the reserved bandwidth is unavailable.
- 36. The method of claim 34 wherein rebuilding the control burst comprises using information on resources available in the PBS network.
- 37. A machine-readable medium to provide instructions, which when executed by a machine, cause the machine to perform operations for use in a wavelength-division multiplexed (WDM) photonic burst switched (PBS) network, the operations comprising:
converting an optical control burst from the PBS network into an electrical control burst; de-framing the electrical control burst; determining bandwidth reservation information from the de-framed control burst; determining configuration settings for an optical switch responsive to the bandwidth reservation information, the optical switch switching an optical data burst associated with the control burst, the optical data burst received from the PBS network; rebuilding the control burst after processing the bandwidth reservation information; framing the rebuilt control burst; and transmitting another optical control burst over the PBS network containing the information of the framed rebuilt control burst.
- 38. The machine-readable medium of claim 37 to provide further instructions, which when executed by the machine, cause the machine to perform operations comprising determining an alternative for handling the optical data burst received from the PBS network when the reserved bandwidth is unavailable.
- 39. The machine-readable medium of claim 37 wherein rebuilding the control burst comprises using information on resources available in the PBS network.
- 40. A system comprising:
a first network; and a photonic burst switched (PBS) network coupled to the first network, the PBS network further comprising a switching node that includes;
an optical-electrical (O-E) interface to receive an optical control burst via the PBS network; a control burst de-framer to de-frame optical burst information received from the O-E interface; a control burst processing component to determine bandwidth reservation information from the de-framed optical burst information; a PBS switch controller to determine configuration settings for an optical switch using the bandwidth reservation information; a control burst re-builder to rebuild the control burst after being processed by the control burst processing component; a control burst framer to frame the rebuilt burst from the control burst re-builder; and an electrical-optical (E-O) interface to transmit the framed control burst over the PBS network.
- 41. The system of claim 40 wherein the switching node further comprises a contention resolver to provide an alternative for handling a data burst associated with the received control burst when the reserved bandwidth is unavailable.
- 42. The system of claim 40 wherein the switching node further comprises a resource manager to provide information on resources available in the PBS network to the control burst re-builder.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] The present application is related to U.S. patent application Ser. No. 10/126,091, filed Apr. 17, 2002, U.S. patent application Ser. No. 10/183,111, filed Jun. 25, 2002, U.S. patent application Ser. No. 10/328,571, filed Dec. 24, 2002, and co-filed U.S. patent application Ser. No. ______ (Attorney Docket No. 42P15725).