Sensor deployment in wireless sensor networks with linear topology using virtual node concept

被引:0
作者
Rodrigue K. Domga
Razvan Stanica
Maurice Tchuente
Fabrice Valois
机构
[1] Université de Yaoundé I,CETIC, LIRIMA, Faculté des Sciences
[2] CITI-Inria,INSA Lyon
来源
Wireless Networks | 2019年 / 25卷
关键词
Linear wireless sensor network; Deployment; Energy efficiency; Virtual node; Greedy algorithm; Lifetime;
D O I
暂无
中图分类号
学科分类号
摘要
In a multi-hop wireless sensor network with a convergecast communication model, there is a high traffic accumulation in the neighborhood of the sink. This area constitutes the bottleneck of the network since the sensors deployed withing it rapidly exhaust their batteries. In this paper, we consider the problem of sensors deployment for lifetime maximization in a linear wireless sensor network. Existing approaches express the deployment recommendations in terms of distance between consecutive sensors. Solutions imposing such constraints on the deployment may be costly and difficult to manage. In this paper, we propose a new approach where the network is formed of virtual nodes, each associated to a certain geographical area. An analytical model of the network traffic per virtual node is proposed and a greedy algorithm to calculate the number of sensors that should form each virtual node is presented. Performance evaluation shows that the greedy deployment can improve the network lifetime by up to 40%, when compared to the uniform deployment. Moreover, the proposed approach outperforms the related work when complemented by a scheduling algorithm which reduces the messages overhearing. It is also shown that the lifetime of the network can be significantly improved if the battery capacity of each sensor is dimensioned taking into account the traffic it generates or relays.
引用
收藏
页码:4947 / 4962
页数:15
相关论文
共 76 条
[1]  
Jawhar I(2011)Linear wireless sensor networks: Classification and applications Journal of Network and Computer Applications 34 1671-1682
[2]  
Mohamed N(2010)Smart bridges, smart tunnels: Transforming wireless sensor networks from research prototypes into robust engineering infrastructure Ad Hoc Networks 8 872-888
[3]  
Agrawal DP(2011)BorderSense: Border patrol through advances wireless sensor networks Ad Hoc Networks 9 468-477
[4]  
Stajano F(2008)Characterizing the traffic distribution in linear wireless sensor networks IEEE Communications Letters 12 554-556
[5]  
Hoult N(2006)Design guidelines for maximizing lifetime and avoiding energy holes in sensor networks with uniform distribution and uniform reporting INFOCOM 2006 1-12
[6]  
Wassell I(2007)On the deployment of wireless data back-haul networks IEEE Transactions on Wireless Communications 6 1426-1435
[7]  
Bennett P(2012)From modeling to implementation of virtual sensors in body sensor networks IEEE Sensors Journal 12 583-593
[8]  
Middleton C(2017)A survey of network lifetime maximization techniques in wireless sensor networks IEEE Communications Surveys & Tutorials 19 828-854
[9]  
Soga K(2009)Achieving long-term surveillance in vigilnet ACM Transaction Sensor Networks 5 1-39
[10]  
Sun Z(2014)Optimal deployment in randomly deployed heterogeneous WSNs: A connected coverage approach Journal of Network and Computer Applications 46 182-197