Balanced and Multi-objective Optimized Opportunistic Routing for Underwater Sensor Networks

被引:0
作者
N. Kanthimathi
机构
[1] Anna University Regional Campus,Department of Computer Science and Engineering
来源
Wireless Personal Communications | 2017年 / 94卷
关键词
Underwater acoustic sensor networks; Opportunistic routing; Energy efficiency; Optimization; Bat algorithm;
D O I
暂无
中图分类号
学科分类号
摘要
Underwater sensor communication medium has been motivated in the recent years, to explore probing targets in the area of interest within the ocean. The main challenge in acoustic sensor networks is to maintain the energy level balance among the nodes, throughout the entire lifetime of the network. Hence, a Balanced Multi-objective Optimized Opportunistic Routing (BMOOR) is proposed to forward the packet through multi-hop from downstream node to upstream node, so as to reach the sink at the surface. The proposed method refashions the nodes based on the dynamic estimations with respect to energy and the selection of optimal forwarders along the depth in a three dimensional network. In contrast to the existing techniques, the proposed protocol does not require spatial location, which is very expensive in UWSN. This in turn overcomes the fear of the single node getting trapped during greedy forwarding. The proposed method is further optimized using meta-heuristic, generation based bio-inspired algorithm (Bat) for delay minimization and delivery ratio maximization. Bat algorithm optimizes the opportunistic path by random fly with respect to fitness till it converges to an optimal pareto front, thereby the network lifetime is enhanced. Extensive simulation study using NS2 with an underwater simulation package proved that BMOOR contributes significant performance improvements over other representative UASN routing protocols.
引用
收藏
页码:2417 / 2440
页数:23
相关论文
共 50 条
[21]   CED-OR Based Opportunistic Routing Mechanism for Underwater Wireless Sensor Networks [J].
Shahzad Ashraf ;
Mingsheng Gao ;
Zhengming Chen ;
Hamad Naeem ;
Tauqeer Ahmed .
Wireless Personal Communications, 2022, 125 :487-511
[22]   Coding-Aware Opportunistic Routing for Sparse Underwater Wireless Sensor Networks [J].
Zhao, Danfeng ;
Lun, Guiyang ;
Xue, Rui .
IEEE ACCESS, 2021, 9 :50170-50187
[23]   G-MOHRA: Green Multi-Objective Hybrid Routing Algorithm for Wireless Sensor Networks [J].
Kulkarni, Nandkumar ;
Prasad, Neeli Rashmi ;
Prasad, Ramjee .
2014 INTERNATIONAL CONFERENCE ON ADVANCES IN COMPUTING, COMMUNICATIONS AND INFORMATICS (ICACCI), 2014, :2185-2190
[24]   Time-variant balanced routing strategy for underwater wireless sensor networks [J].
Albukhary, Rawan Abdullah ;
Bouabdallah, Fatma .
WIRELESS NETWORKS, 2019, 25 (06) :3481-3495
[25]   Balanced Energy Efficient Rectangular Routing Protocol for Underwater Wireless Sensor Networks [J].
Abbasi, Junaid Shabbir ;
Javaid, Nadeem ;
Gull, Saba ;
Islam, Saiful ;
Imran, Muhammad ;
Hassan, Najmul ;
Nasr, Kashif .
2017 13TH INTERNATIONAL WIRELESS COMMUNICATIONS AND MOBILE COMPUTING CONFERENCE (IWCMC), 2017, :1634-1640
[26]   Time-variant balanced routing strategy for underwater wireless sensor networks [J].
Rawan Abdullah Albukhary ;
Fatma Bouabdallah .
Wireless Networks, 2019, 25 :3481-3495
[27]   Load-Balanced Opportunistic Routing for Duty-Cycled Wireless Sensor Networks [J].
So, Jungmin ;
Byun, Heejung .
IEEE TRANSACTIONS ON MOBILE COMPUTING, 2017, 16 (07) :1940-1955
[28]   A secure and energy-efficient opportunistic routing protocol with void avoidance for underwater acoustic sensor networks [J].
Menon, Varun ;
Midhunchakkaravarthy, Divya ;
John, Sonali ;
Jacob, Sunil ;
Mukherjee, Amrit .
TURKISH JOURNAL OF ELECTRICAL ENGINEERING AND COMPUTER SCIENCES, 2020, 28 (04) :2303-2315
[29]   Multi-objective UAV routing [J].
Hernandez-Hernandez, Lucia ;
Tsourdos, Antonios ;
Shin, Hyo-Sang ;
Waldock, Antony .
2014 INTERNATIONAL CONFERENCE ON UNMANNED AIRCRAFT SYSTEMS (ICUAS), 2014, :534-542
[30]   Secure opportunistic based void-hold routing for underwater acoustic sensor networks [J].
Battula, Ashok ;
Roslin, S. Emalda .
OPTICAL AND QUANTUM ELECTRONICS, 2024, 56 (02)