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Investigation of Delay Tolerant Network Routing Protocols with Energy Consumption Analysis

机译:基于能耗分析的时延容忍网络路由协议研究

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Delay Tolerant Networks (DTNs) are the results of the evolutions in mobile networks in which an end-to-end path may not exist. The main challenge in DTN routing is how to increase delivery ratio of messages and consume less resources. This paper focuses on the routing and energy consumption issues in DTNs using limited resources and investigate the performance of four DTN routing protocols which are Epidemic, PRoPHET, MaxProp and Spray andWait (SaW) with the metrics such as node's average remaining energy, number of dead nodes, delivery ratio, average latency and overhead ratio. All of these investigations are performed in detail by changing number of nodes, message size, message generation interval, node's speed, time to live and buffer size. The simulation results show that the SaW protocol outperforms other protocols in terms of energy consumption whereas MaxProp protocol has the highest delivery ratio. In contrast, Epidemic results the worst performance.
机译:时延容忍网络(DTN)是移动网络演进的结果,其中可能不存在端到端路径。 DTN路由中的主要挑战是如何提高邮件的传递比率和消耗更少的资源。本文着眼于使用有限资源的DTN中的路由和能耗问题,并研究了四个DTN路由协议的性能,这些协议是Epidemic,PRoPHET,MaxProp和Spray andWait(SaW),其度量标准包括节点的平均剩余能量,死亡人数节点,传递比率,平均延迟和开销比率。所有这些调查都是通过更改节点数,消息大小,消息生成间隔,节点的速度,生存时间和缓冲区大小来详细执行的。仿真结果表明,SaW协议在能耗方面优于其他协议,而MaxProp协议具有最高的交付率。相反,流行病导致最差的性能。

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