Title :
An Assurance Enhanced Route-Split Routing for Non-uniform Node Density in Mobile Ad Hoc Networks
Author :
Takeuchi, Mario ; Kimura, Anri ; Kohno, Eitaro ; Ohta, Tomoyuki ; Kakuda, Yoshiaki
Author_Institution :
Grad. Sch. of Inf. Sci., Hiroshima City Univ., Hiroshima, Japan
Abstract :
Assurance network technologies are necessary to realize trustable terminal/infrastructure service applications. Heterogeneous requirements are independently generated for assurance networks. In real situations, nodes are not uniformly distributed in networks, and it is assumed that there are dense and sparse areas. This difference of node densities will be serious in the large scale networks. When flooding is conducted in a dense area, network congestion occurs and nodes cannot communicate each other. So far, Route-Split Routing (RSR) has been proposed, and RSR can communicate with higher throughput than AODV in large MANETs. In large MANETs, nodes would be distributed non-uniformly. Thus, routing protocols for large MANETs must consider that its route can pass through sparse areas and dense areas. In this paper, we propose a new routing method based on RSR for non-uniformly node distributed large MANETs. We have implemented our proposed method into a simulator and evaluated it through simulation experiments. We have observed our proposed method is effective in nonuniformly node distributed large MANETs.
Keywords :
mobile ad hoc networks; routing protocols; AODV; assurance enhanced route-split routing; assurance networks; heterogeneous requirements; large-scale networks; mobile ad hoc networks; network congestion; nonuniform node density; nonuniformly node-distributed MANET; routing protocols; terminal-infrastructure service application; Ad hoc networks; Maintenance engineering; Mobile computing; Routing; Routing protocols; Storms; Throughput; AODV; Assurance Networks; Mobile Ad Hoc Networks; Node Density; Route-Split Routing;
Conference_Titel :
Ubiquitous Intelligence & Computing and 9th International Conference on Autonomic & Trusted Computing (UIC/ATC), 2012 9th International Conference on
Conference_Location :
Fukuoka
Print_ISBN :
978-1-4673-3084-8
DOI :
10.1109/UIC-ATC.2012.19