IP Library Patent Application 10582592
Patent Application
App. No. 10/582,592

Method for substitute switching of spatially separated switching systems

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Quick Facts
Patent No.
US None
App. No.
10/582,592
Abstract

An identical clone, with identical hardware, identical software and an identical data base, is allocated to each switching system to be protected, as a redundancy partner. Switching is carried out in a quick, secure and automatic manner by a superordinate, real-time enabled monitor which establishes communication with the switching systems which are arranged in pairs. In the event of communication loss with respect to the active communication system, real-time switching to the redundant switching system is carried out with the aid of the central controls of the two switching systems.

Claims (39)

1 - 10 . (canceled)

11 . A method for substitute switching of spatially separated switching systems, comprising:

providing a pair of switching systems having one-to-one redundancy, comprising a first switching system in an active operating state in terms of switching, and a second switching system in a hot-standby operating state in terms of switching, the second switching system geographically separated from the first switching system;

establishing communication between a monitoring system and at least one of the paired switching systems; and

changing over in terms of switching from the active switching system to the hot-standby switching system in the event of a loss of communication to the switching system in the active operating state,

wherein the change over occurs in real time.

12 . The method as claimed in claim 11 ,

wherein each switching system comprising a central controller,

the method further comprising exchanging test messages between the monitoring system and the central controllers of the paired switching systems.

13 . The method as claimed in claim 12 , wherein the messages are exchanged periodically.

14 . The method as claimed in claim 12 , wherein the exchange of the test messages between the monitoring system and the switching system in the active operating state is controlled via the switching system by sending a test request to the monitoring system and receiving a positive acknowledgement.

15 . The method as claimed in claim 12 , wherein the exchange of the test message between the monitoring system and the switching system in the hot-standby operating state is controlled via the switching system by sending a test request to the monitoring system and receiving a negative acknowledgement.

16 . The method as claimed in claim 12 , wherein the exchange of the test messages between the monitoring system and the switching system in the hot-standby operating state is controlled via the switching system by sending a test request to the monitoring system and receiving no acknowledgement.

17 . The method as claimed in 12 , further comprising:

reporting to the network management system by the monitoring system the loss of communication with the switching system in the active operating state; and

sending changeover instructions to the monitoring system.

18 . The method as claimed in 12 ,

wherein the change over is controlled by the monitoring system by sending a positive acknowledgement to a test request sent by the switching system in hot-standby operating state, and

wherein the switching system in the hot-standby operating state is changed to the active operating state by the central controller after receiving the positive acknowledgement.

19 . The method as claimed in 18 , wherein the switching system with the communication loss is changed to the hot-standby operating state and is not automatically switched back to the active operating state following a resolution of the communication loss.

20 . The method as claimed in 11 , further comprising:

reporting to the network management system by the monitoring system the loss of communication with the switching system in the active operating state; and

sending changeover instructions to the monitoring system.

21 . The method as claimed in 11 ,

wherein the change over is controlled by the monitoring system by sending a positive acknowledgement to a test request, and

wherein the switching system in the hot-standby operating state is changed to the active operating state after receiving the positive acknowledgement.

22 . The method as claimed in 21 , wherein the switching system with the communication loss is changed to the hot-standby operating state and is not automatically switched back to the active operating state following a resolution of the communication loss.

23 . A monitoring system for monitoring a failure of an active switching system, comprising:

a first monitor comprising:

a first communication link to the active switching system, the active switching system in an active operating state in terms of switching,

a second communication link to a second switching system that is geographically separated from the first switching system, the second switching system in a hot-standby operating state in terms of switching;

a second monitor that is geographically separated from the first monitor, the second monitor comprising:

a first communication link to the active switching system, the active switching system in an active operating state in terms of switching,

a second communication link to a second switching system that is geographically separated from the first switching system, the second switching system in a hot-standby operating state in terms of switching; and

a communication link between the first and second monitors,

wherein a failure on the first communication link triggers the second switching system to change over to the active operating state, and

wherein the change over is in real time.

24 . The monitoring system as claimed in claim 23 , wherein the a communication loss between the first monitor and the active switching system causes a synchronization between the monitoring systems in order to trigger the second switching system to change over to the active operating state.

25 . The monitoring system as claimed in claim 24 , wherein the active switching system determined by both the first and second monitors is maintained active if a communication fault between the first and second monitors occurs.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 4, 2008
From: SIEMENS AKTIENGESELLSCHAFT
To: NOKIA SIEMENS NETWORKS GMBH & CO KG
Reel/Frame 021786/0236 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 9, 2006
From: LOBIG, NORBERT; TEGELER, JURGEN
To: SIEMENS AKTIENGESELLSCHAFT
Reel/Frame 017985/0452 →