Optimal relay nodes placement with game theory optimization for Wireless Sensor Networks

IF 0.7 Q4 COMPUTER SCIENCE, INFORMATION SYSTEMS
S. Radha, G. Bala, Nalluri Prophess Rajkumar, G. Indumathi, P. Nagabushanam
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引用次数: 0

Abstract

Wireless Sensor Networks (WSN) play a major role in the wide variety of applications like underground pipeline and leaks monitoring, temperature distribution monitoring in industrial cyber systems, military, forest life monitoring, and environmental and geographical monitoring. Sensors are widely used in these different applications. The number of sensors and the application concerned mainly decides the energy consumption, network lifetime. In this process relay nodes may help the sensors as backbone to connect with sink node or base stations. In this paper, we introduce a new approach for relay node selection in WSN to minimize the energy consumption of the network. It uses channel aware relay selection technique using game theory optimization and act as a virtual backbone in connecting to the base station. However, the relay nodes are varied to check the optimal number of relays required for the small, medium and large number of nodes deployed in the network. Simulations are carried out using Network Simulator NS-2.35 and network is analyzed in wide variety of scenarios. Results show that the proposed relay node selection algorithm reduces energy consumption, improves lifetime, throughput of the network.
基于博弈论的无线传感器网络中继节点优化配置
无线传感器网络(WSN)在各种应用中发挥着重要作用,如地下管道和泄漏监测、工业网络系统中的温度分布监测、军事、森林生命监测以及环境和地理监测。传感器广泛应用于这些不同的应用中。传感器的数量和所涉及的应用主要决定能耗、网络寿命。在此过程中,中继节点可以帮助作为骨干的传感器与汇聚节点或基站连接。在本文中,我们介绍了一种在无线传感器网络中选择中继节点的新方法,以最小化网络的能耗。它使用博弈论优化的信道感知中继选择技术,并在连接到基站时充当虚拟骨干。然而,中继节点是可变的,以检查部署在网络中的小型、中型和大型节点所需的最佳中继数量。使用网络模拟器NS-2.35进行仿真,并在各种场景中分析网络。结果表明,所提出的中继节点选择算法降低了网络的能耗,提高了网络的使用寿命和吞吐量。
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来源期刊
Journal of High Speed Networks
Journal of High Speed Networks Computer Science-Computer Networks and Communications
CiteScore
1.80
自引率
11.10%
发文量
26
期刊介绍: The Journal of High Speed Networks is an international archival journal, active since 1992, providing a publication vehicle for covering a large number of topics of interest in the high performance networking and communication area. Its audience includes researchers, managers as well as network designers and operators. The main goal will be to provide timely dissemination of information and scientific knowledge. The journal will publish contributed papers on novel research, survey and position papers on topics of current interest, technical notes, and short communications to report progress on long-term projects. Submissions to the Journal will be refereed consistently with the review process of leading technical journals, based on originality, significance, quality, and clarity. The journal will publish papers on a number of topics ranging from design to practical experiences with operational high performance/speed networks.
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