DS-VBF: Dual sink vector-based routing protocol for underwater wireless sensor network

K. Maryam Pouryazdanpanah, Mohammadfazel Anjomshoa, S. A. Salehi, A. Afroozeh, G. Marjan Moshfegh
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引用次数: 23

Abstract

Underwater wireless sensor networks (UWSNs) have become the seat of researchers' attention recently due to their proficiency to explore underwater areas and design different applications for marine discovery and oceanic surveillance. One of the main objectives of each deployed underwater network is discovering the optimized path over sensor nodes to transmit the monitored data to onshore station. The process of transmitting data consumes energy of each node, while energy is limited in UWSNs. So energy efficiency is a challenge in underwater wireless sensor network. Dual sinks vector based forwarding (DS-VBF) takes both residual energy and location information into consideration as priority factors to discover an optimized routing path to save energy in underwater networks. The modified routing protocol employs dual sinks on the water surface which improves network lifetime. According to deployment of dual sinks, packet delivery ratio and the average end to end delay are enhanced. Based on our simulation results in comparison with VBF, average end to end delay reduced more than 80%, remaining energy increased 10%, and the increment of packet reception ratio was about 70%.
DS-VBF:水下无线传感器网络的双sink矢量路由协议
水下无线传感器网络(UWSNs)由于能够熟练地探索水下区域并设计出不同的海洋发现和海洋监测应用,近年来成为研究人员关注的焦点。每个部署的水下网络的主要目标之一是找到传感器节点上的最佳路径,将监测数据传输到陆上站点。数据传输过程消耗每个节点的能量,而uwsn的能量是有限的。因此,能源效率是水下无线传感器网络的一个挑战。双汇矢量转发(DS-VBF)在水下网络中,将剩余能量和位置信息作为优先考虑因素,发现最优的路由路径,从而达到节能的目的。改进后的路由协议采用水面双汇点,提高了网络的生存时间。通过双汇聚的部署,提高了分组发送率和平均端到端时延。与VBF相比,我们的仿真结果表明,平均端到端延迟降低80%以上,剩余能量增加10%,数据包接收率增加约70%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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