Method and Apparatus of Routing Convergence in Control Plane of an Intelligent Optical Network

Abstract
The embodiments of the invention provide a method of routing convergence in a control plane of an intelligent optical network, which includes: a function unit perceiving a service link state transmitting an alarm notification message indicating a failure in a service link to a routing protocol unit when the service link is in failure; the routing protocol unit confirming a service link failure in the control plane according to the alarm notification message. The embodiments of the invention also provide an apparatus of routing convergence in a control plane of an intelligent optical network. According to the embodiments of the invention, the establishment of a new service or re-routing may be implemented within several seconds or even hundreds of milliseconds after the service link failure in the control plane occurs.
Description

BRIEF DESCRIPTION OF THE DRAWINGS


FIG. 1 is a simplified schematic diagram illustrating a topology structure of the control plane of an intelligent optical network.



FIG. 2 is a simplified schematic flow chart illustrating a method of routing convergence in the control plane according to the embodiments of the invention.



FIG. 3 is a simplified flow chart illustrating a method of routing convergence in the control plane according to an embodiment of the invention.



FIG. 4 is a simplified flow chart illustrating a method of routing convergence in the control plane according to another embodiment of the invention.



FIG. 5 is a simplified flow chart illustrating a method of routing convergence in the control plane according to another embodiment of the invention.





DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS

The invention is further described in detail with reference to the accompanying drawings and embodiments.


The embodiments of the invention include: a function unit perceiving a service link state in an intelligent optical network transmits an alarm notification message indicating a failure in a service link to a routing protocol unit when the service link is in failure; and the routing protocol unit confirms a service link failure in the control plane according to the alarm notification message.


The function unit perceiving the link state in the intelligent optical network may be a function unit in the transport plane or other intelligent protocol units except the routing protocol unit. The alarm notification message includes an alarm message of the function unit perceiving a service link failure in the transport plane and a notification message of other intelligent protocol units perceiving a service link failure. The common character of the alarm message and the notification message is that it takes a short time to perceive the service link failure, generally several seconds or even hundreds of milliseconds.



FIG. 2 is a simplified schematic flow chart illustrating a method of routing convergence in the control plane according to embodiments of the invention. As shown in FIG. 2, the method includes the following steps.


Step 201: a function unit perceiving a service link state in the intelligent optical network transmits an alarm notification message indicating a failure in a service link to a routing protocol unit when the service link is in failure.


Step 202: the routing protocol unit confirms a service link failure in the control plane.


The technical schemes of the embodiments of the invention will be hereinafter illustrated in detail with reference to intelligent optical networks based on heterogeneous devices and different alarm notification messages. In an embodiment of the invention, the method of routing convergence in the control lane is implemented by an intelligent optical network based on the Synchronous Digital Hierarchy/Synchronous Optical Network (SDH/SONET). FIG. 3 is a simplified flow chart illustrating a method of routing convergence in the control plane according to the present embodiment. As shown in FIG. 3, the method includes the following steps.


Step 301: a function unit in the transport plane transmits a service failure alarm of a multiplex segment or a service failure alarm of a regenerative segment to a routing protocol unit after perceiving a service link failure in the transport plane. The function unit in this embodiment is a traditional static device without intelligent features.


Step 302: upon receiving the service failure alarm of the multiplex segment or the service failure alarm of the regenerative segment, the routing protocol unit confirms a service link failure in the control plane which is located in the same physical channel with the service link in the transport plane.


When the intelligent optical network based on the SDH/SONET uses an in-band control mode, the service link in the transport plane and the service link in the control plane are the same physical entity. Therefore, the service link failure in the transport pane is the service link failure in the control plane. When the intelligent optical network based on the SDS/SONET uses an out-band control mode, the link resources in the control plane may be an optical fiber link in the intelligent optical network and is not the same optical fiber link with the service link in the transport plane. Thus, the service failure alarm of the multiplex segment or the service failure alarm of the regenerative segment directly indicates a failure in the optical fiber link belonging to the control plane.


In this step, the alarm notification message for confirming a service link failure in the control plane is the service failure alarm of the multiplex segment or the service failure alarm of the regenerative segment, or may be other alarm messages.


Step 303: the routing protocol unit calculates a routing table in the control plane, and updates a routing forward table to enable all intelligent protocol messages in the control plane to reach destination nodes in time.


In this embodiment, the service link failure in the control plane is confirmed through the failure of the physical entity to which the service link in the control plane belongs. The method of this embodiment is applicable to the intelligent optical network which is based on the SDH/SONET and uses the in-band control mode or out-band control mode.


In another embodiment of the invention, the method of routing convergence in the control plane in this embodiment is implemented by the intelligent optical network based on a Wavelength Division Multiplexing (WDM) network. FIG. 4 is a simplified flow chart illustrating a method of routing convergence in the control plane according to this embodiment. As shown in FIG. 4, the method includes the following steps.


Step 401: a function unit in an Optical CHannel (OCH) layer of the transport plane transmits a service failure alarm to a routing protocol unit after perceiving a service link failure in the transport plane. The function unit in this embodiment is a traditional static device without intelligent features.


Step 402: upon receiving the service failure alarm of the OCH layer, the routing protocol unit confirms a service link failure in the control plane which is located in the same physical channel with the service link in the transport plane.


When the intelligent optical network based on the WDM network uses an in-band control mode, the service link in the transport plane and the service link in the control plane are the same physical entity. Therefore, the service link failure in the transport plane is the service link failure in the control plane. When the intelligent optical network based on the WDM network uses an out-band control mode, the link resources in the control plane may be an optical fiber link in the intelligent optical network and is not the same optical fiber link with the service link in the transport plane. Thus, the service failure alarm of the OCH layer directly indicates a failure in the optical link belonging to the control plane.


In this step, the alarm notification message for confirming a service link failure in the control plane is the service failure alarm of the OCH layer, or may be other alarm messages.


Step 403: the routing protocol unit calculates a routing table in the control plane, and updates a routing forward table to enable all intelligent protocol messages of control plane to reach destination nodes in time.


In this embodiment, the service link failure in the control plane is confirmed through the failure of the physical entity to which the service link in the control plane belongs. The method of this embodiment is applicable to the intelligent optical network which is based on the WDM network and uses the in-band control mode or out-band control mode.



FIG. 5 is a simplified schematic flow chart illustrating a method of routing convergence in the control plane according to another embodiment of the invention. As shown in FIG. 5, the method includes the following steps.


Step 501: a Link Management Protocol (LMP) unit detects a service link failure in the transport plane and transmits an alarm notification message of the service link failure in the control plane to a routing protocol unit.


Step 502: upon receiving the alarm notification message of the service link failure in the control plane, the routing protocol unit confirms a service link failure in the control plane.


The LMP protocol unit may perceive the failure of a control channel in a short time. The routing protocol unit may get the service link failure in the control plane after receiving the alarm notification message.


Step 503: the routing protocol unit calculates a routing table in the control plane, and updates a routing forward table to enable all intelligent protocol messages of control plane to reach destination nodes in time.


This embodiment is applicable to all intelligent optical networks. According to this embodiment, it is possible to quickly determine the state change of the service link in the control plane under the circumstance that the service link in the transport plane is normal but a service link in the control plane is in failure.


The foregoing descriptions are only preferred embodiments of the invention and are not for use in limiting the protection scope thereof. Any modification, equivalent replacement or improvement made under the spirit and principles of the invention is included in the protection scope of the claims of the invention.

Claims
  • 1. A method of routing convergence in a control plane of an intelligent optical network, comprising: transmitting, by a function unit perceiving a service link state, an alarm notification message indicating a failure in a service link to a routine protocol unit when the service link is in failure;confirming, by the routing protocol unit, a service link failure in the control plane according to the alarm notification message.
  • 2. The method of claim 1, wherein the intelligent optical network is a Synchronous Digital Hierarchy/Synchronous Optical Network (SDH/SONET).
  • 3. The method of claim 2, wherein said transmitting the alarm notification message indicating the failure in the service link to the routing protocol unit comprises:transmitting, by a function unit perceiving a service link failure in a transport plane of the SDH/SONET, a service failure alarm of a multiplex segment or a service failure alarm of a regenerative segment to the routing protocol unit when a service link in the transport plane is in failure;said confirming the service link failure in the control plane comprises:confirming, by the routing protocol unit, a service link failure in the control plane which is located in the same physical channel with the service link in the transport plane upon receiving the service failure alarm of the multiplex segment or the service failure alarm of the regenerative segment.
  • 4. The method of claim 3, wherein the function unit is a traditional static device without intelligent features.
  • 5. The method of claim 1, wherein the intelligent optical network is a Wavelength Division Multiplexing (WDM) network.
  • 6. The method of claim 5, wherein said transmitting the alarm notification message indicating the failure in the service link to the routing protocol unit comprises:transmitting, by a function unit perceiving a service link failure in a transport plane of an optical channel layer of the WDM network, a service failure alarm to the routing protocol unit when a service link in the transport plane is in failure;said confirming the service link failure in the control plane comprises:confirming, by the routing protocol unit, a service link failure in the control plane which is located in the same physical channel with the service link in the transport plane upon receiving the service failure alarm.
  • 7. The method of claim 6, wherein the function unit is a traditional static device without intelligent features.
  • 8. The method of claim 1, wherein the function unit is a Link Management Protocol (LMP) unit; said transmitting the alarm notification message indicating the failure in the service link to the routing protocol unit comprises:transmitting, by the LMP unit, a service failure notification to the routing protocol unit when the service link is in failure:said confirming the service link failure in the control plane comprises:confirming, by the routing protocol unit, a service link failure in the control plane upon receiving the service failure notification.
  • 9. The method of claim 1, further comprising: calculating, by the routing protocol unit, a routing table of the control plane, and updating a routing forward table according to the calculated result.
  • 10. An apparatus of routing convergence in a control plane of an intelligent optical network, comprising: a function unit perceiving a service link state, for transmitting an alarm notification message indicating a failure in a service link when the service link is in failure;a routing protocol unit, for confirming a service link failure in the control plane according to the alarm notification message.
  • 11. The apparatus of claim 10, wherein the function unit is a function unit perceiving a service link failure in a transport plane of a Synchronous Digital Hierarchy/Synchronous Optical Network (SDH/SONET); the routing protocol unit confirms a service link failure in the control plane which is located in the same physical channel with the service link in the transport plane.
  • 12. The apparatus of claim 11, the alarm notification message is a service failure alarm of a multiplex segment or a service failure alarm of a regenerative segment and is transmitted to the routing protocol unit when a service link in the transport plane is in failure.
  • 13. The apparatus of claim 10, wherein the function unit is a function unit perceiving a service link failure in a transport plane of an optical channel layer of a Wavelength Division Multiplexing (WDM) network; the routing protocol unit confirms a service link failure in the control plane which is located in the same physical channel with the service link in the transport plane.
  • 14. The apparatus of claim 13, the alarm notification message is a service failure alarm message and is transmitted to the routing protocol unit when a service link in the transport plane is in failure.
  • 15. The apparatus of claim 10, wherein the function unit is a Link Management Protocol (LMP) unit; the alarm notification message is a service failure notification and is transmitted to the routing protocol unit when a service link is in failure;the routing protocol unit confirms a service link failure in the control plane.
  • 16. The apparatus of claim 10, wherein the routing protocol unit calculates a routing table of the control plane and updates a routing forward table according to the calculated result.
Priority Claims (1)
Number Date Country Kind
200610103318.8 Jul 2006 CN national