Title :
A synthesis method for fault-tolerant and flexible multipath routing protocols
Author :
Hatanaka, Yutaka ; Nakamura, Masahide ; Kakuda, Yoshiaki ; Kikuno, Tohru
Author_Institution :
Dept. of Inf. & Math. Sci., Osaka Univ., Japan
Abstract :
Design of practical routing protocols is complex and difficult due to complicated requirements of fault tolerance and flexibility. The protocol is defined to be fault-tolerant if messages can be rerouted via another path when the communication channel fails. In this paper, we propose a new synthesis method for generating a fault-tolerant routing protocol for a given service specification and a network topology. The routing protocol thus obtained adopts a multipath routing augmented with sets, where each set stores the next nodes for routing, and updates the sets according to network topology changes. Additionally, the routing protocol can attain flexibility by the multipath routing mechanism in the sense that only a small amount of changes is needed for addition or deletion of nodes. Finally, we show the effectiveness of the proposed method through an application to a typical routing service of message delivery from a source node to a destination node
Keywords :
fault tolerant computing; packet switching; protocols; telecommunication channels; telecommunication network routing; communication channel; destination node; fault-tolerant routing protocols; flexible multipath routing protocols; message delivery; network topology changes; service specification; source node; synthesis method; Communication channels; Communication switching; Delay effects; Design engineering; Fault tolerance; Informatics; Network synthesis; Network topology; Packet switching; Routing protocols;
Conference_Titel :
Engineering of Complex Computer Systems, 1997. Proceedings., Third IEEE International Conference on
Conference_Location :
Como
Print_ISBN :
0-8186-8126-8
DOI :
10.1109/ICECCS.1997.622301