Hybrid Wireless Sensors Deployment Scheme with Connectivity and Coverage Maintaining in Wireless Sensor Networks

被引:0
作者
Arouna Ndam Njoya
Ado Adamou Abba Ari
Marah Nana Awa
Chafiq Titouna
Nabila Labraoui
Joseph Yves Effa
Wahabou Abdou
Abdelhak Gueroui
机构
[1] University of Versailles Saint-Quentin-en-Yvelines,LI
[2] University of Ngaoundéré,PaRAD Lab, Université Paris Saclay
[3] University of Maroua,Department of Computer Engineering, LASE Lab
[4] University Paris Descartes,LaRI Lab
[5] University Abou Bekr Belkaid Tlemcen,LIPARADE Lab
[6] University of Burgundy,STIC Lab
来源
Wireless Personal Communications | 2020年 / 112卷
关键词
Target coverage; Connectivity; Approximation algorithms; Wireless sensor networks;
D O I
暂无
中图分类号
学科分类号
摘要
With the rapid growth of the internet of things (IoT), an impressive number of IoT’s application based on wireless sensor networks (WSNs) has been deployed in various domain. Due to its wide ranged applications, WSNs that have the capability to monitor a given sensing field, became the most used platform of IoT. Therefore, coverage becomes one of the most important challenge of WSNs. The search for better positions to assign to the sensors in order to control each point of an area of interest and the collection of data from sensors are major concerns in WSNs. This work addresses these problems by providing a hybrid approach that ensures sensors deployment on a grid for targets coverage while taking into account connectivity. The proposed sequential hybrid approach is based on three algorithms. The first places the sensors so as to all targets are covered. The second removes redundancies from the placement algorithm to reduce the number of sensors deployed. The third one, based on the genetic algorithm, aims to generate a connected graph which provide a minimal path that links deployed sensors and sink. Simulations and a comparative study were carried out to prove the relevance of the proposed method.
引用
收藏
页码:1893 / 1917
页数:24
相关论文
共 170 条
[1]  
Thakur D(2019)Applicability of wireless sensor networks in precision agriculture: A review Wireless Personal Communications 107 1-42
[2]  
Kumar Y(2016)A power efficient cluster-based routing algorithm for wireless sensor networks: Honeybees swarm intelligence based approach Journal of Network and Computer Applications 69 77-97
[3]  
Kumar A(2016)An adaptive clustering approach to dynamic load balancing and energy efficiency in wireless sensor networks Energy 114 647-662
[4]  
Singh PK(2018)Fault-tolerant and energy-efficient routing protocols for a virtual three-dimensional wireless sensor network Computers and Electrical Engineering 72 949-964
[5]  
Ari AAA(2013)Confident information coverage in sensor networks for field reconstruction IEEE Wireless Communications 20 74-81
[6]  
Yenke BO(2014)Sensor deployment and scheduling for target coverage problem in wireless sensor networks IEEE Sensors Journal 14 636-644
[7]  
Labraoui N(2013)An efficient genetic algorithm for maximum coverage deployment in wireless sensor networks IEEE Transactions on Cybernetics 43 1473-1483
[8]  
Damakoa I(2015)A deployment strategy for multiple types of requirements in wireless sensor networks IEEE Transactions on Cybernetics 45 2364-2376
[9]  
Gueroui A(2017)Efficient scalable sensor node placement algorithm for fixed target coverage applications of wireless sensor networks IET Wireless Sensor Systems 7 44-54
[10]  
Gherbi C(2019)Sensor and sink placement, scheduling and routing algorithms for connected coverage of wireless sensor networks Ad Hoc Networks 86 83-102