无线传感器网络中基于元搜索优化的聚类与路由协议

IF 1.7 4区 计算机科学 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC
Chinnarao Kurangi, Kiran Kumar Paidipati, A. Siva Krishna Reddy, Jayasankar Uthayakumar, Ganesan Kadiravan, Shabana Parveen
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引用次数: 0

摘要

摘要 近年来,无线传感器设备在危险地理空间监测和物联网等多个应用领域的使用急剧增加。虽然传感器节点(SN)的功率有限,但在大多数情况下更换电池是不可行的。因此,在设计有效的传输协议时,无线传感器网络(WSN)的节能是主要关注点。集群可以降低能量消耗,延长网络寿命。WSN 的路由协议是一个工程领域,由于其快速的演变和发展,已经引起了研究人员的极大兴趣。其中,聚类路由协议是管理每个 SN 能量消耗的最有效技术。在本手稿中,我们重点讨论了在 WSN 中设计一种新的基于元启发式优化的能量感知聚类路由协议寿命最大化(MOEACR-LM)方法。MOEACR-LM 方法的目的是通过正确选择簇头(CHs)和有效的数据传输来提高网络效率。首先,基于猎人-猎物优化(HPO)方法的聚类技术被用于簇的构建和 CH 的选择过程。接着,云豹优化(CLO)模型被用于 WSN 的路由选择过程。HPO 和 CLO 模型为聚类和路由选择过程推导出了一个涉及多个参数的适合度函数。为证明 MOEACR-LM 技术的增强性能,进行了全面的实验分析。整体比较研究表明,MOEACR-LM 技术的能效结果优于其他现有方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Metaheuristic optimization‐based clustering with routing protocol in wireless sensor networks
SummaryIn recent years, the use of wireless sensor devices in several applications, for example, monitoring in dangerous geographical spaces and the Internet of Things, has dramatically increased. Though sensor nodes (SNs) have limited power, battery replacement is not feasible in most cases. Therefore, energy saving in wireless sensor networks (WSN) is the major concern in the design of effective transmission protocol. Clustering might lower energy usage and increase network lifetime. Routing protocol for WSN represents an engineering area that has gained considerable interest among researchers due to its rapid evolution and development. Among them, the clustering routing protocol corresponds to the most effective technique to manage the energy consumption of each SN. In this manuscript, we focus on the design of a new metaheuristic optimization‐based energy‐aware clustering with routing protocol for lifetime maximization (MOEACR‐LM) method in WSN. The purpose of the MOEACR‐LM method is to improve network efficiency via proper selection of cluster heads (CHs) and effective data transmission. Initially, a hunter–prey optimization (HPO) method‐based clustering technique is used for cluster construction and the CH selection process. Next, the clouded leopard optimization (CLO) model is used for the route selection process in WSN. The HPO and CLO models derive a fitness function involving multiple parameters for clustering and routing processes. A comprehensive experimental analysis is carried out to demonstrate the enhanced performance of the MOEACR‐LM technique. The overall comparison study pointed out the improved energy efficiency results of the MOEACR‐LM technique over other existing approaches.
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来源期刊
CiteScore
5.90
自引率
9.50%
发文量
323
审稿时长
7.9 months
期刊介绍: The International Journal of Communication Systems provides a forum for R&D, open to researchers from all types of institutions and organisations worldwide, aimed at the increasingly important area of communication technology. The Journal''s emphasis is particularly on the issues impacting behaviour at the system, service and management levels. Published twelve times a year, it provides coverage of advances that have a significant potential to impact the immense technical and commercial opportunities in the communications sector. The International Journal of Communication Systems strives to select a balance of contributions that promotes technical innovation allied to practical relevance across the range of system types and issues. The Journal addresses both public communication systems (Telecommunication, mobile, Internet, and Cable TV) and private systems (Intranets, enterprise networks, LANs, MANs, WANs). The following key areas and issues are regularly covered: -Transmission/Switching/Distribution technologies (ATM, SDH, TCP/IP, routers, DSL, cable modems, VoD, VoIP, WDM, etc.) -System control, network/service management -Network and Internet protocols and standards -Client-server, distributed and Web-based communication systems -Broadband and multimedia systems and applications, with a focus on increased service variety and interactivity -Trials of advanced systems and services; their implementation and evaluation -Novel concepts and improvements in technique; their theoretical basis and performance analysis using measurement/testing, modelling and simulation -Performance evaluation issues and methods.
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