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Energy Efficient Architecture for Intra and Inter Cluster Communication for Underwater Wireless Sensor Networks

机译:水下无线传感器网络集群内和集群间通信的节能架构

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Underwater Wireless Sensor Networks (UWSNs) consume a significant amount of energy because of high transmission power and lengthy data packet transmission time. Sensors of UWSNs, which perform numerous tasks like target tracking, intrusion detection etc. can preserve energy and attain longer network life time by appropriate selection of cluster head (CH), cluster size (CS), and routing scheme. In order to achieve this, an Intra and Inter Cluster Communication (IICC) for data aggregation in UWSN have been proposed here. In our approach, the CH selection and CS are determined by using fuzzy logic. The main strength of our paper is to provide an optimal selection for CH as well as optimal intra and inter cluster communications based on energy and multiple paths. Minimum Average Routing Path Clustering Protocol method is implemented for intra-clustering communication in the network. Hierarchical Multi-path Routing-LEACH method is implemented for inter-cluster communication in the network. Experimental simulation shows that IICC improves the performance of UWSN in terms of end-to-end packet delay, energy consumption and packet delivery ratio. The proposed approach is adaptive in nature as it reduces the average energy consumption and end-to-end delay, thereby improving the packet delivery ratio.
机译:水下无线传感器网络(UWSN)由于传输功率高和数据包传输时间长而消耗大量能量。通过适当选择群集头(CH),群集大小(CS)和路由方案,UWSN的传感器执行许多任务,如目标跟踪,入侵检测等,可以节省能量并获得更长的网络寿命。为了实现这一点,这里已经提出了用于UWSN中的数据聚合的集群内和集群间通信(IICC)。在我们的方法中,使用模糊逻辑确定CH选择和CS。本文的主要优势是为CH提供最佳选择,并基于能量和多路径为集群内和集群间通信提供最佳选择。实现了最小平均路由路径群集协议方法,用于网络中的群集内通信。为网络中的集群间通信实现了分层多路径路由-LEACH方法。实验仿真表明,IICC在端到端分组延迟,能耗和分组传送率方面提高了UWSN的性能。所提出的方法本质上是自适应的,因为它减少了平均能量消耗和端到端延迟,从而提高了分组传送率。

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