Energy efficient and link reliable routing (E2LR) scheme for underwater sensor networks

被引:1
作者
Moeenuddin Tariq
Muhammad Ayaz
Fazli Subhan
M. Zahid Abbas
机构
[1] National University of Modern Languages (NUML),Department of Computer Science
[2] University of Tabuk,Sensor Networks and Cellular Systems (SNCS) Research Center
[3] COMSATS Institute of Information Technology (CIIT),Department of Computer Science
来源
Peer-to-Peer Networking and Applications | 2021年 / 14卷
关键词
Underwater sensor network; Energy consumption; Link reliability; End-to-end delay; Efficient routing; Network lifetime;
D O I
暂无
中图分类号
学科分类号
摘要
Underwater Sensor Network (USN) is the wireless network infrastructure applicable in deep ocean to detect, collect, and transmit information to a remote data acquisition location on shore. Underwater routing protocols are used to provide route information in addition to ensuring efficient data and information collection and transmission. Some routing strategies for USNs are linked to high energy consumption, high end-to-end delay and shorter network lifetime. These issues are due to unnecessary packet flooding especially during route establishment, improper selection of next hop neighbor and frequent communication for route maintenance. Considering these challenges, this paper presents a localization free energy efficient and link reliable (E2LR) routing protocol that controls unnecessary flooding of hello packets to reduce energy consumption in the information distribution phase. Further, E2LR calculates the link quality using a composite metric for next hop selection which ultimately reduces end-to-end delay and regularly updates the energy status in order to achieve optimization during routing operations. Simulation results show that E2LR exhibit higher performance than both H2-DAB and R-ERP2R in terms of energy efficiency during information distribution phase and data forwarding phase. Moreover, E2LR also shows superior performance regarding end-to-end delay, network lifetime and packet delivery ratio than compared protocols.
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页码:1870 / 1888
页数:18
相关论文
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