Claims
- 1. A system comprising:
a component to provide a first frame having information formatted into a first burst, the first burst being included in a first payload portion of a first synchronous payload envelope (SPE) of the first frame; an optical interface to optically transmit the first frame to a node of an optical network so as to be data-rate and format compatible with a synchronous optical network, the node comprising an optical switch that is selectively configurable in response to a control burst included in an optical frame.
- 2. The system of claim 1 wherein in response to the first burst comprising a data burst, the system is to selectively optically transmit a second frame having a second SPE with a second payload portion that includes a control burst that is associated with the data burst, the system optically transmitting the second frame to the node prior to optically transmitting the first frame.
- 3. The system of claim 1 wherein in response to the first burst comprising a control burst, the system is to selectively optically transmit a third frame having a third SPE with a third payload portion that includes a data burst associated with the control burst, the system optically transmitting the third frame to the node after a predetermined time delay after optically transmitting the first frame.
- 4. The system of claim 1 wherein the optical network comprises a wavelength division multiplexed (WDM) network.
- 5. The system of claim 1 wherein the first frame comprises a 10 gigabit per second Ethernet frame with Wide Area Network Interface Sub-layer (WIS).
- 6. The system of claim 1 wherein the optical interface is to transmit optical signals that are data-rate and format compatible with synchronous optical network (SONET) ANSI T1.105-2001.
- 7. The system of claim 6 wherein the data-rate and format of the optical signals conform to Optical Carrier (OC)-192 SONET/SDH specifications.
- 8. The system of claim 1 wherein the first SPE of the first frame further comprises a path overhead portion.
- 9. The system of claim 1 wherein the first frame further comprises an overhead portion separate from the first SPE to store information related to the optical network.
- 10. The system of claim 1 wherein the system is to provide a network layer address, a media access control (MAC) layer address and a Section Trace string via a second network that interconnects two or more nodes of the optical network.
- 11. A method comprising:
formatting information into a first burst; including the first burst in a first payload portion of a first synchronous payload envelope; forming a first frame including the first synchronous payload envelope (SPE); and optically transmitting the first frame to a node of an optical network so as to be data-rate and format compatible with a synchronous optical network, the node comprising an optical switch that is selectively configurable in response to a control burst included in an optical frame.
- 12. The method of claim 11 wherein in response to the first burst comprising a data burst, the method further comprises selectively optically transmitting to the node a second frame that includes a second SPE prior to optically transmitting the first frame, the second SPE including a second payload portion, the second payload portion to include a control burst associated with the data burst.
- 13. The method of claim 11 wherein in response to the first burst comprising a control burst, the method further comprises selectively optically transmitting to the node a third frame that includes a third SPE after a predetermined time delay after optically transmitting the first frame, the third SPE including a third payload portion to include a data burst associated with the control burst.
- 14. The method of claim 11 wherein the optical network comprises a wavelength division multiplexed (WDM) network.
- 15. The method of claim 11 wherein the first frame comprises a 10 gigabit per second Ethernet frame with Wide Area Network Interface Sub-layer (WIS).
- 16. The method of claim 11 wherein optically transmitting the first frame further comprises transmitting optical signals that are data-rate and format compatible with synchronous optical network (SONET) ANSI T1.105-2001.
- 17. The method of claim 16 wherein the data-rate and format of the optical signals conform to Optical Carrier (OC)-192 specifications.
- 18. The method of claim 11 wherein the first SPE of the first frame further comprises a path overhead portion.
- 19. The method of claim 11 wherein the first frame further comprises an overhead portion separate from the first SPE to store information related to the optical network.
- 20. The method of claim 11 further comprising providing a network layer address, a media access control (MAC) layer address and a Section Trace string related to a node that is part of the optical network via a second network that interconnects two or more nodes of the optical network.
- 21. An optical network, comprising:
a first edge node, comprising:
a component to provide a first frame having information formatted into a first burst, the first burst being included in a first payload portion of a first synchronous payload envelope (SPE) of the first frame; and an optical interface to optically transmit the first frame to be data-rate and format compatible with a synchronous optical network; a plurality of optical switching nodes each including an optical switch that is selectively configurable in response to a control burst included in an optical frame received by that optical switching node, wherein a first switching node of the plurality of switching nodes is coupled to the first edge node; and a second edge node coupled to a second optical switching node of the plurality of optical switching nodes.
- 22. The optical network of claim 21 wherein when the first burst is a data burst, the first edge node is to optically transmit a second frame having a second SPE with a second payload portion that includes a control burst that corresponds to the data burst, the first edge node optically transmitting the second frame prior to optically transmitting the first frame.
- 23. The optical network of claim 21 wherein in response to the first burst comprising a control burst, the first edge node is to selectively optically transmit a third frame having a third SPE with a third payload portion that includes a data burst corresponding to the control burst, the first edge node optically transmitting the third frame to the first optical switching node after a predetermined time delay after optically transmitting the first frame.
- 24. The optical network of claim 21 wherein the optical network comprises a wavelength division multiplexed (WDM) network.
- 25. The optical network of claim 21 wherein the first frame comprises a 10 gigabit per second Ethernet frame with Wide Area Network Interface Sub-layer (WIS).
- 26. The optical network of claim 21 wherein the optical interface is to transmit optical signals that are data-rate and format compatible with synchronous optical network (SONET) ANSI T1.105-2001.
- 27. The optical network of claim 26 wherein the data-rate and format of the optical signals conform to Optical Carrier (OC)-192 specifications.
- 28. The optical network of claim 21 wherein the first SPE of the first frame further comprises a path overhead portion.
- 29. The optical network of claim 21 wherein the first frame further comprises an overhead portion separate from the first SPE to store information related to the optical network.
- 30. The optical network of claim 21 wherein the system to provide a network layer address, a media access control (MAC) layer address and a Section Trace string via a second network that interconnects two or more nodes of the optical network.
- 31. A system comprising:
a component to provide a first frame having information formatted into a first burst, the first burst being included in a first payload portion of the first frame, the first frame including a media access control (MAC) address of an egress node of an optical network and a network layer address of a data destination external to the optical network; and an optical interface to optically transmit the first frame to a node of the optical network, the node comprising an optical switch that is selectively configurable in response to a control burst included in an optical frame.
- 32. The system of claim 31 wherein in response to the first burst comprising a data burst, the system is to selectively optically transmit a second frame having a second SPE with a second payload portion that includes a control burst associated with the data burst, the system optically transmitting the second frame prior to optically transmitting the first frame.
- 33. The system of claim 31 wherein in response to the first burst comprising a control burst, the system is to selectively optically transmit a third frame having a third SPE with a third payload portion that includes a data burst associated with the control burst, the system optically transmitting the third frame after optically transmitting the first frame.
- 34. The system of claim 31 wherein the optical network comprises a wavelength division multiplexed (WDM) network.
- 35. The system of claim 31 wherein the first frame comprises a frame compatible with synchronous optical network (SONET) ANSI T1.105-2001
- 36. The system of claim 35 wherein the frame has a data-rate and format compatible with Optical Carrier (OC)-192 SONET specifications.
- 37. The system of claim 31 wherein the network layer address of the data destination comprises an Internet Protocol (IP) address.
- 38. The system of claim 31 wherein the system to provide its network layer address and media access control (MAC) layer address on a second network that includes a plurality of nodes of the optical network.
- 39. A method comprising:
formatting information into a first burst; including the first burst in a first payload portion of a first synchronous payload envelope; forming a first frame including the first synchronous payload envelope (SPE), the first frame further comprising a media access control (MAC) address of an egress node of an optical network and a network layer address of a data destination external to the optical network; and optically transmitting the first frame to a node of the optical network, the node comprising an optical switch that is selectively configurable in response to a control burst included in an optical frame.
- 40. The method of claim 39 wherein in response to the first burst comprising a data burst, the method further comprises selectively optically transmitting a second frame that includes a second SPE prior to optically transmitting the first frame, the second SPE including a second payload portion, the second payload portion to include a control burst associated with the data burst.
- 41. The method of claim 39 wherein in response to the first burst comprising a control burst, the method further comprises selectively optically transmitting a third frame that includes a third SPE after optically transmitting the first frame, the third SPE including a third payload portion to include a data burst associated with the control burst.
- 42. The method of claim 39 wherein the optical network comprises a wavelength division multiplexed (WDM) network.
- 43. The method of claim 39 wherein the first frame is compatible with synchronous optical network (SONET) ANSI T1.105-2001.
- 44. The method of claim 43 wherein the first frame has a data-rate and format compatible with Optical Carrier (OC)-192 specifications.
- 45. The method of claim 39 wherein the network layer address of the data destination comprises an Internet Protocol (IP) address.
- 46. The method of claim 39 further comprising providing a network layer address and a media access control (MAC) layer address on a second network that interconnects two or more nodes of the optical network.
- 47. An optical network, comprising:
first and second edge nodes, the first edge node comprising:
a component to provide a first frame having information formatted into a first burst, the first burst being included in a first payload portion of the first frame, the first frame including a media access control (MAC) address of an egress node of an optical network and a network layer address of a data destination external to the optical network; and an optical interface to optically transmit the first frame to a node of the optical network, the node comprising an optical switch that is selectively configurable in response to a control burst included in an optical frame; and a plurality of optical switching nodes each including an optical switch that is selectively configurable in response to a control burst included in an optical frame received by that optical switching node, wherein first and second optical switching nodes of the plurality of optical switching nodes are respectively coupled to the first and second edge nodes.
- 48. The optical network of claim 47 wherein in response to the first burst comprising a data burst, the system is to selectively optically transmit a second frame having a second SPE with a second payload portion that includes a control burst associated with the data burst, the system optically transmitting the second frame prior to optically transmitting the first frame.
- 49. The system of claim 47 wherein in response to the first burst comprising a control burst, the system is to selectively optically transmit a third frame having a third SPE with a third payload portion that includes a data burst corresponding to the control burst, the system optically transmitting the third frame after optically transmitting the first frame.
- 50. The optical network of claim 47 wherein the optical network comprises a wavelength division multiplexed (WDM) network.
- 51. The optical network of claim 47 wherein the first frame is compatible with synchronous optical network (SONET) ANSI T1.105-2001.
- 52. The optical network of claim 51 wherein the first frame has a data-rate and format compatible with Optical Carrier (OC)-192 specifications.
- 53. The optical network of claim 47 wherein the network layer address of the data destination comprises an Internet Protocol (IP) address.
- 54. The optical network of claim 47 wherein the first edge node is to provide its network layer address and media access control (MAC) layer address on a second network that interconnects a plurality of edge nodes of the optical network.
- 55. The system of claim 9 wherein the information comprises metadata.
- 56. The method of claim 19 wherein the information comprises metadata.
- 57. The optical network of claim 29 wherein the information comprises metadata.
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; U.S. patent application Ser. No. 10/377,312 filed Feb. 28, 2003; U.S. patent application Ser. No. 10/377,580 filed Feb. 28, 2003; U.S. patent application Ser. No. 10/417,823 filed Apr. 16, 2003; U.S. patent application Ser. No. 10/417,487 filed Apr. 17, 2003; and U.S. patent application Ser. No. ______ (Attorney Docket No. 42P16183) filed May 19, 2003.