Claims
- 1. An optical system comprising:
a first network tier including a plurality of major nodes optically interconnected by at least one transmission path; a second network tier including a plurality of minor nodes disposed along the transmission path and the minor nodes are connected to at least one of the major nodes, wherein the minor node is configured to transmit all traffic to an adjacent major node and the major nodes are configured to transmit to and receive information from other major nodes and minor nodes on transmission paths connected to the major node.
- 2. The optical system of claim 1, further comprising a third network tier of major nodes optically interconnected by at least one transmission path, wherein the first and third network tiers have different hierarchical attributes.
- 3. The optical system of claim 2, wherein the first and third network tiers have different capacities.
- 4. The optical system of claim 2, wherein the first and third network tiers have different line rates.
- 5. The optical system of claim 1, further comprising a fourth network tier of minor nodes disposed along the transmission paths, wherein the second network tier and fourth network tier have different hierarchical attributes.
- 6. The optical system of claim 5, further comprising wavelengths transmitted along the transmission paths between the minor and major nodes, wherein the second network tier reuses wavelengths and the fourth network tier does not reuse wavelengths.
- 7. An optical system comprising:
a plurality of major nodes optically interconnected by at least one transmission path; at least one minor node disposed along the transmission path connected to at least one of the major nodes, wherein the minor node is configured to transmit all traffic to an adjacent major node and the major nodes are configured to transmit to and receive information from other major nodes and minor nodes on transmission paths connected to the major node.
- 8. The optical system of claim 7, wherein the major nodes aggregate traffic from minor nodes.
- 9. The optical system of claim 7, wherein the adjacent major node extracts traffic destined for the minor node and forwards the traffic to the minor node.
- 10. The optical system of claim 7, further comprising wavelengths transmitted along transmission paths between the major nodes, wherein traffic is transmitted between a first major node and a second major node along a wavelength.
- 11. The optical system of claim 10, wherein traffic is transmitted between a first major node and a second major node along more than one wavelength.
- 12. The optical system of claim 11, wherein the wavelengths transmitted between the first and second major nodes use different transmission paths between the first and second major nodes.
- 13. The optical system of claim 11, wherein the wavelengths transmitted between the first and second major nodes use the same transmission between the first and second major nodes.
- 14. The optical system of claim 13, wherein the wavelengths are grouped into a spectral group.
- 15. The optical system of claim 10, wherein traffic is transmitted along a wavelength between a first set of two major nodes along a first path and along the same wavelength between a second set of two major nodes along a second path where the first and second paths cover diverse paths through the transmission path.
- 16. The optical system of claim 7, wherein the minor node has a first and a second adjacent major node and the first adjacent major node provides a working path for the minor node and the second adjacent major node provides a protection path for the minor node.
- 17. A method for optically communicating in an optical network having first and second network tiers including a plurality of major and minor nodes, respectively, interconnected by at least one optical communications path, comprising:
receiving at a major node traffic from a minor node; aggregating traffic received at the major node from the minor node; transmitting traffic from the major node to another node in the network.
- 18. The method of claim 17, wherein the major node and the minor node are adjacent to each other.
- 19. The method of claim 17, wherein aggregating includes aggregating traffic into a plurality of signal channels based on traffic destination.
- 20. The method of claim 17, wherein receiving includes receiving at the major node traffic from a plurality of minor nodes.
- 21. The method of claim 20, wherein aggregating includes aggregating traffic received at the major node from a plurality of minor nodes.
- 22. The method of claim 17, wherein transmitting includes transmitting at least one signal channel to another major node.
- 23. The method of claim 17, wherein transmitting includes transmitting at least one signal channel to a different minor node.
- 24. The method of claim 17, further comprising:
receiving traffic at a major node, wherein less than all of the traffic is destined for a minor node; separating at the major node the traffic destined for the minor node; transmitting to the minor node the traffic destined for the minor node.
- 25. The method of claim 24, wherein receiving includes receiving traffic from a major node.
- 26. The method of claim 24, wherein receiving includes receiving traffic from a minor node.
- 27. The method of claim 24 wherein:
separating includes separating traffic destined for a plurality of minor nodes; transmitting includes transmitting traffic to the plurality of minor nodes.
- 28. The method of claim 17, further comprising:
providing a working path between a minor node and a first adjacent major node; and providing a protection path between a minor node and a second adjacent major node.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims priority from U.S. Provisional Patent Application No. 60/300,746 filed on Jun. 25, 2001.
Provisional Applications (1)
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Number |
Date |
Country |
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60300746 |
Jun 2001 |
US |