IP Library › Granted Patent US 9,819,546
Granted Patent B2
US 9,819,546 · App. 14/867,679 · Granted Nov 14, 2017

Data connectivity systems and methods through packet-optical switches

Inventor: Loudon T. Blair (Severna Park, MD)
Assignee: Ciena Corporation
H04L41/0826H04B10/27H04L12/4641H04L45/18H04L49/351H04Q11/0066H04Q11/0067H04J3/1658H04J14/026H04J14/0227H04J14/0273H04J2203/006H04J2203/0053H04J2203/0067H04L45/02H04L45/16H04L45/50H04L45/62H04L45/64H04Q2011/009H04Q2011/0073H04Q2011/0077H04Q2011/0098
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Quick Facts
Patent No.
US 9,819,546
App. No.
14/867,679
Granted
Nov 14, 2017
Kind
B2
Abstract

Systems and methods for providing a data service through a packet-optical switch in a network include, subsequent to defining a loop-free forwarding topology for the data service in the network, if the packet-optical switch is a degree 2 site for the data service, providing the data service through the packet-optical switch at a Layer 1 protocol bypassing a partitioned packet fabric of the packet-optical switch; and if the packet-optical switch is a degree 3 or more site for the data service with multi-point connectivity, providing the data service through the packet-optical switch at the Layer 1 protocol and at a packet level using the partitioned packet fabric to provide the data service between the multi-point connectivity and to associated OTN connections for each degree of the degree 3 or more site.

Claims (30)

1. A method for providing a data service through a packet-optical switch in a network, the method comprising:

subsequent to defining a loop-free forwarding topology for the data service in the network, if the packet-optical switch is at a degree 2 site for the data service, providing the data service through the packet-optical switch at a Layer 1 protocol bypassing a partitioned packet fabric of the packet-optical switch; and

if the packet-optical switch is at a degree 3 or more site for the data service with multi-point connectivity, providing the data service through the packet-optical switch at the Layer 1 protocol and at a packet level using the partitioned packet fabric to provide the data service between the multi-point connectivity and to associated Layer 1 connections for each degree of the degree 3 or more site.

2. The method of claim 1 , wherein the partitioned packet fabric in the packet-optical switch utilizes a software-defined virtual switch using Software Defined Networking (SDN).

3. The method of claim 1 , wherein the partitioned packet fabric in the packet-optical switch utilizes a Virtual Switching Instance (VSI).

4. The method of claim 1 , wherein the Layer 1 protocol comprises Flexible Ethernet (FlexE).

5. The method of claim 1 , wherein the Layer 1 protocol comprises Optical Transport Network (OTN).

6. The method of claim 1 , wherein the data service is one of Multiprotocol Label Switching (MPLS) switching and Internet Protocol (IP) routing.

7. The method of claim 1 , wherein the data service is Ethernet.

8. The method of claim 1 , wherein the data service utilizes a Layer 1-enabled topology instead of a physical topology of the network for a loop free topology.

9. A packet-optical switch configured to provide a data service in a network, the packet-optical switch comprising:

one or more line ports;

a Layer 1 switching fabric; and

a packet switching fabric;

wherein subsequent to a determination of a loop-free forwarding topology for the data service in the network, if the packet-optical switch is at a degree 2 site for the data service, the one or more line ports are configured to provide the data service at a Layer 1 protocol through the Layer 1 switching fabric bypassing the packet switching fabric; and

wherein if the packet-optical switch is at a degree 3 or more site for the data service with multi-point connectivity, the one or more line ports are configured to provide the data service at the Layer 1 protocol through the Layer 1 switching fabric and at a packet level using a partitioned packet fabric on the packet switching fabric to provide the data service between the multi-point connectivity and to associated Layer 1 connections for each degree of the degree 3 or more site.

10. The packet-optical switch of claim 9 , wherein the partitioned packet fabric in the packet-optical switch utilizes a software-defined virtual switch using Software Defined Networking (SDN).

11. The packet-optical switch of claim 9 , wherein the partitioned packet fabric in the packet-optical switch utilizes a Virtual Switching Instance (VSI).

12. The packet-optical switch of claim 9 , wherein the Layer 1 protocol comprises Flexible Ethernet (FlexE).

13. The packet-optical switch of claim 9 , wherein the Layer 1 protocol comprises Optical Transport Network (OTN).

14. The packet-optical switch of claim 9 , wherein the data service is one of Multiprotocol Label Switching (MPLS) switching and Internet Protocol (IP) routing.

15. The packet-optical switch of claim 9 , wherein the data service is Ethernet.

16. The packet-optical switch of claim 9 , wherein the data service utilizes a Layer 1-enabled topology instead of a physical topology of the network for a loop free topology.

17. A network configured to provide a data service, the network comprising:

a plurality of packet-optical switches,

wherein subsequent to a determination of a loop-free forwarding topology for the data service in the network, for each of the plurality of packet-optical switches which is at a degree 2 site for the data service, the each of the plurality of packet-optical switches which is at a degree 2 site provide the data service at a Layer 1 protocol through the Layer 1 switching fabric bypassing the packet switching fabric; and

wherein for each of the plurality of packet-optical switches which is at a degree 3 or more site for the data service with multi-point connectivity, each of the plurality of packet-optical switches which is at a degree 3 or more to provide the data service at the Layer 1 protocol through a Layer 1 switching fabric and at a packet level using a partitioned packet fabric on the packet switching fabric to provide the data service between the multi-point connectivity and to associated Layer 1 connections for each degree of the degree 3 or more site.

18. The network of claim 17 , wherein the partitioned packet fabric in the packet-optical switch utilizes one of a software-defined virtual switch using Software Defined Networking (SDN) and a Virtual Switching Instance (VSI).

19. The network of claim 17 , wherein the Layer 1 protocol comprises one of Flexible Ethernet (FlexE) and Optical Transport Network (OTN).

20. The method of claim 1 , wherein the data service is one or more of Multiprotocol Label Switching (MPLS) switching, Internet Protocol (IP) routing, and Ethernet.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 28, 2015
From: BLAIR, LOUDON T.
To: CIENA CORPORATION
Reel/Frame 036671/0477 →
Continuity (3)
Continuation In Part 13898140 · May 20, 2013
Continuation In Part 13178028 · Jul 7, 2011
Related Publication 20160028586A1 · Jan 28, 2016