DocumentCode :
3295211
Title :
Setup-trail-avoidance routing algorithm
Author :
Busche, Matthew T. ; Olszewski, Christopher J.
Author_Institution :
Lucent Technol., Westminster, CO, USA
fYear :
1996
fDate :
29 Oct-1 Nov 1996
Firstpage :
140
Lastpage :
149
Abstract :
The setup-trail-avoidance routing (STAR) algorithm is a new simple distributed routing algorithm for connection-oriented mesh networks. In this algorithm, signaling messages used to set up a service (or end-to-end connection) contain a list of nodes, called the setup trail, that have participated in routing the service to its destination. A node receiving such a signaling message will then calculate a shortest-path route to the service´s destination using a network topology specific to the type of service, after first removing from the topology other nodes in the service´s setup trail. STAR adapts to changing network conditions, choosing efficient routes for services (e.g., asynchronous transfer mode [ATM] virtual paths) while at the same time quickly terminating service setup requests that have little or no chance of being successfully completed. Simulated restoration studies show STAR has the best performance characteristics among many distributed restoration algorithms
Keywords :
network topology; telecommunication network routing; telecommunication signalling; ATM; STAR algorithm; asynchronous transfer mode; connection-oriented mesh networks; destination; distributed restoration algorithms; distributed routing algorithm; end-to-end connection; network conditions; network topology; performance characteristics; restoration studies; setup-trail-avoidance routing algorithm; shortest-path route; signaling messages; virtual paths; Asynchronous transfer mode; Centralized control; Control systems; ISDN; Mesh networks; Network topology; Protocols; Robustness; Routing; Signal restoration;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Network Protocols, 1996. Proceedings., 1996 International Conference on
Conference_Location :
Columbus, OH
Print_ISBN :
0-8186-7453-9
Type :
conf
DOI :
10.1109/ICNP.1996.564928
Filename :
564928
Link To Document :
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