Multilayer DS-MAC with game theory optimization

IF 0.8 4区 工程技术 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC Circuit World Pub Date : 2021-07-26 DOI:10.1108/cw-08-2020-0197
S. Radha, G. Bala, P. Nagabushanam
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引用次数: 1

Abstract

Purpose Energy is the major concern in wireless sensor networks (WSNs) for most of the applications. There exist many factors for higher energy consumption in WSNs. The purpose of this work is to increase the coverage area maintaining the minimum possible nodes or sensors. Design/methodology/approach This paper has proposed multilayer (ML) nodes deployment with distributed MAC (DS-MAC) in which nodes listen time is controlled based on communication of neighbors. Game theory optimization helps in addressing path loss constraints while selecting path toward base stations (BS). Findings The simulation is carried out using NS-2.35, and it shows better performance in ML DS-MAC compared to random topology in DS-MAC with same number of BS. The proposed method improves performance of network in terms of energy consumption, network lifetime and better throughput. Research limitations/implications Energy consumption is the major problem in WSNs and for which there exist many reasons, and many approaches are being proposed by researchers based on application in which WSN is used. Node mobility, topology, multitier and ML deployment and path loss constraints are some of the concerns in WSNs. Practical implications Game theory is used in different situations like countries whose army race, business firms that are competing, animals generally fighting for prey, political parties competing for vote, penalty kicks for the players in football and so on. Social implications WSNs find applications in surveillance, monitoring, inspections for wild life, sea life, underground pipes and so on. Originality/value Game theory optimization helps in addressing path loss constraints while selecting path toward BS.
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具有博弈论优化的多层DS-MAC
在无线传感器网络(WSNs)的大多数应用中,能量是主要关注的问题。影响无线传感器网络能耗的因素很多。这项工作的目的是在尽可能少的节点或传感器的情况下增加覆盖面积。设计/方法/方法本文提出了基于分布式MAC (DS-MAC)的多层(ML)节点部署,其中节点的侦听时间是基于邻居的通信来控制的。博弈论优化有助于在选择基站路径时解决路径损耗约束问题。结果采用NS-2.35进行仿真,在相同BS数的情况下,ML DS-MAC比DS-MAC的随机拓扑表现出更好的性能。该方法在能耗、网络寿命和吞吐量方面提高了网络性能。研究局限/启示能量消耗是无线传感器网络的主要问题,其原因有很多,基于无线传感器网络的应用,研究人员提出了许多方法。节点移动性、拓扑、多层和机器学习部署以及路径损失约束是wsn中需要关注的一些问题。实际意义博弈论用于不同的情况,如国家的军队竞赛,竞争的商业公司,为猎物而战的动物,争夺选票的政党,足球运动员的点球等等。swsn在监视、监测、检查野生动物、海洋生物、地下管道等方面都有应用。独创性/价值博弈理论优化有助于在选择通往BS的路径时解决路径损失约束。
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来源期刊
Circuit World
Circuit World 工程技术-材料科学:综合
CiteScore
2.60
自引率
0.00%
发文量
33
审稿时长
>12 weeks
期刊介绍: Circuit World is a platform for state of the art, technical papers and editorials in the areas of electronics circuit, component, assembly, and product design, manufacture, test, and use, including quality, reliability and safety. The journal comprises the multidisciplinary study of the various theories, methodologies, technologies, processes and applications relating to todays and future electronics. Circuit World provides a comprehensive and authoritative information source for research, application and current awareness purposes. Circuit World covers a broad range of topics, including: • Circuit theory, design methodology, analysis and simulation • Digital, analog, microwave and optoelectronic integrated circuits • Semiconductors, passives, connectors and sensors • Electronic packaging of components, assemblies and products • PCB design technologies and processes (controlled impedance, high-speed PCBs, laminates and lamination, laser processes and drilling, moulded interconnect devices, multilayer boards, optical PCBs, single- and double-sided boards, soldering and solderable finishes) • Design for X (including manufacturability, quality, reliability, maintainability, sustainment, safety, reuse, disposal) • Internet of Things (IoT).
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