Title :
A Hybrid Type DTN Routing Method Using Delivery Predictability and Maximum Number of Replication
Author :
Miyakawa, Tomoaki ; Koyama, Akio
Author_Institution :
Dept. of Inf., Yamagata Univ., Yamagata, Japan
Abstract :
In recent years, by spread of wireless communication terminal, a demand for wireless networks which can use anywhere and anytime is increasing. In some of wireless networks, communication environments have became with long time communication delay and occurrence of link disconnection. It was not supposed in current communication networks. In such a worst communication environment, Delay / Disruption / Disconnection Tolerant Networks (DTN) are paid attention as a communication technology with high reliability. In DTN, each node replicates messages to an encountered node and the receiving node repeats this procedure until the messages reach destination nodes. However, in DTN which assumes poor communication environment, it is difficult to determine nodes for replication. Since nodes in DTN control the replication by a routing method, communication performance changes by affinity of communication environments and routing methods. From these reasons, the routing method is important research target in DTN. In this paper, we propose a routing method which combines Spray and Wait, and Prophet. The Spray and Wait restricts a number of replications and the Prophet determines a replicated node by comparing delivery predictability for destination node. We aim improvement of message arrival rate by combining these two methods. From evaluations of experiments of real machine and simulation, we show that the proposed method has high message arrival rate than Spray and Wait, and Prophet.
Keywords :
delay tolerant networks; radio links; radio networks; telecommunication network reliability; telecommunication network routing; DTN control; PRoPHET; communication environments; communication technology reliability; delay-disruption-disconnection tolerant networks; delivery predictability; destination nodes; hybrid type DTN routing method; link disconnection; message arrival rate improvement; receiving node; replication maximum number; spray and wait; wireless communication terminal network; Delays; History; Mathematical model; Reliability; Routing; Wireless networks; DTN; PRoPHET; Routing method; Spray and Wait;
Conference_Titel :
Advanced Information Networking and Applications Workshops (WAINA), 2015 IEEE 29th International Conference on
Conference_Location :
Gwangiu
Print_ISBN :
978-1-4799-1774-7
DOI :
10.1109/WAINA.2015.30