HEPSO: an efficient sensor node redeployment strategy based on hybrid optimization algorithm in UWASN

被引:0
作者
Bhumika Gupta
Kamal Kumar Gola
Manish Dhingra
机构
[1] Govind Ballabh Pant Institute of Engineering & Technology,Faculty of Engineering
[2] Teerthanker Mahaveer University,undefined
来源
Wireless Networks | 2021年 / 27卷
关键词
UWASN (Underwater Wireless Acoustic Sensor Network); Redeployment; Connectivity; Coverage; Hybrid EPO with PSO;
D O I
暂无
中图分类号
学科分类号
摘要
In Underwater Acoustic Sensor Network (UWASN), node redeployment strategy is utilized to handle the reliable network coverage. The sensors deployed in the underwater are used to intellect the area and collected information is moved to the sink node. Node redeployment strategy is essential for the nodes which are placed outside the monitoring area in UWASN. In this paper, the node redeployment strategy is performed based on the hybrid Emperor Penguin Optimization (EPO) algorithm with Particle Search Algorithm (PSO) for better underwater acoustic communication and the proposed method is named as HEPSO. This hybridization is performed to reduce node failure rate and network energy consumption rate by optimally place the sensor nodes in underwater acoustic communication. The stability of the network topology is guaranteed by this algorithm and it enhances the node redeployment strategy by calculating the fitness function for each and every node. The implementation of the proposed algorithm is carried out by the MATLAB platform. The performance parameters like network coverage rate, network connectivity rate, network lifetime, number of nodes outside monitored space and total movement distance of nodes are evaluated and related with current methods like NRBSCT (Node Redeployment Based on Stratified Connected Tree) and MRNR (Moving Redundancy Nodes Redeployment) strategy.
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页码:2365 / 2381
页数:16
相关论文
共 90 条
  • [1] Awan KM(2019)Underwater wireless sensor networks: A review of recent issues and challenges Wireless Communications and Mobile Computing 2019 1-20
  • [2] Shah PA(2018)A reliable energy-efficient pressure-based routing protocol for underwater wireless sensor network Wireless Networks 24 2061-2075
  • [3] Iqbal K(2015)Minimizing the total energy consumption in multi-hop UWASNs Wireless Personal Communications. 83 2693-2709
  • [4] Gillani S(2015)Secure communication for underwater acoustic sensor networks IEEE Communications Magazine 53 54-60
  • [5] Ahmad W(2016)Energy-efficiency and reliability in MAC and routing protocols for underwater wireless sensor network: A survey Journal of Network and Computer Applications 71 72-85
  • [6] Nam Y(2017)Localization in terrestrial and underwater sensor-based m2m communication networks: Architecture, classification and challenges International Journal of Communication Systems 30 e2997-67
  • [7] Khasawneh A(2017)Design of optical-acoustic hybrid underwater wireless sensor network Journal of Network and Computer Applications. 92 59-1547
  • [8] Abd Latiff MS(2016)Underwater optical wireless communication IEEE access 4 1518-2064
  • [9] Kaiwartya O(2016)Coverage-aware connectivity-constrained unattended sensor deployment in underwater acoustic sensor networks Wireless Communications and Mobile Computing 16 2052-183
  • [10] Chizari H(2015)Self-deployment of mobile underwater acoustic sensor networks for maximized coverage and guaranteed connectivity Ad Hoc Networks 34 170-1600