DocumentCode :
2828259
Title :
A Transition Reduction Method for FSM of MANET Routing Protocol with Blacklist
Author :
Kojima, Hideharu ; Ohta, Tomoyuki ; Kakuda, Yoshiaki
Author_Institution :
Grad. Sch. of Inf. Sci., Hiroshima City Univ., Hiroshima, Japan
fYear :
2011
fDate :
23-27 March 2011
Firstpage :
611
Lastpage :
616
Abstract :
In a MANET protocol, links between any two nodes are not always bi-directional because nodes can move around the network and their communication ranges are different. In order to detect unidirectional links, some mechanisms such as blacklist are introduced into the protocol. We call such a protocol unsymmetric. By node mobility over time, a unidirectional link can be changed to the bi-directional link and vice versa. Therefore, whenever directionality of any link changes, the protocol has to correctly detect whether the link is unidirect or bidirect. Even if a node receives the same kind of packet from its neighbor node, behavior of the node is different by the unidirectional or bi-directional link through which the node receives a packet. When testers perform conformance testing for these protocols, testers have to use FSM representing different behaviors of a node depending on directionality of the links. In general, the size of FSM grows exponentially along with increase of neighbors of a node. FSM for unsymmetric protocols is more complicated than that for symmetric protocols. Hence, the number of states and the number of transitions in FSM further increase for unsymmetric protocols. In this paper, we propose a new efficient method to solve this problem by treating both input and output as sets. The proposed method redefines a given FSM to an FSM in which the number of states and the number transitions are drastically reduced.
Keywords :
mobile ad hoc networks; radio links; routing protocols; FSM; MANET routing protocol; bidirectional link; mobile ad hoc networks; node mobility; symmetric protocols; transition reduction method; unidirectional link detection; unsymmetric protocols; Artificial neural networks; Mobile ad hoc networks; Registers; Routing; Routing protocols; Testing; FSM; conformance testing; mobile ad hoc networks; protocol testing;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Autonomous Decentralized Systems (ISADS), 2011 10th International Symposium on
Conference_Location :
Tokyo & Hiroshima
Print_ISBN :
978-1-61284-213-4
Type :
conf
DOI :
10.1109/ISADS.2011.87
Filename :
5741434
Link To Document :
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