An Energy-Efficient Information Aggregation Protocol With Optimized Trilevel K-Means Clustering for IoT-Based WSN Framework: A Case Study on Smart Agriculture

IF 1.7 4区 计算机科学 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC
Vijay Nandal, Sunita Dahiya
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引用次数: 0

Abstract

In agriculture production, Internet of Things–based wireless sensor network (IoT-based WSN) technology is used to observe yield conditions and automatic precision agriculture through different sensors. As a part of intelligent farming decisions, sensors are used in the agricultural field to collect information regarding plants, crops, measurements, temperature, humidity, and irrigation systems. IoT-based WSNs are proposed for smart agriculture that have different levels of design. Initially, significant information is captured by agricultural sensors. Then, an optimized trilevel K-means clustering (KMA) is introduced to cluster the agriculture data. The trilevel KMA is effectively used to extract knowledge in the agriculture field. After that, the cluster head is selected using the arithmetic optimization algorithm (AOA) by considering the general factors, including energy, delay, and distance, improving the lifetime of the nodes. This method proposes a new chain-based routing method for optimizing information transmission in IoT-based WSN frameworks. A comparison between the proposed and existing methods is performed to prove their effectiveness. The experimental results show that the proposed protocol outperforms the other existing methods in terms of throughput (96 kbps), packet delivery ratio (37%), network latency (0.028 ms), and average energy consumption (0.52 J).

Abstract Image

基于物联网的WSN框架中具有优化三层k均值聚类的节能信息聚合协议——以智慧农业为例
在农业生产中,利用基于物联网的无线传感器网络(IoT-based WSN)技术,通过不同的传感器来观察产量情况,实现自动精准农业。作为智能农业决策的一部分,传感器用于农业领域收集有关植物、作物、测量、温度、湿度和灌溉系统的信息。针对具有不同设计层次的智能农业,提出了基于物联网的无线传感器网络。最初,重要信息是由农业传感器捕获的。然后,引入优化的三层k均值聚类(KMA)对农业数据进行聚类。三级KMA有效地应用于农业领域的知识提取。然后,综合考虑能量、时延、距离等综合因素,采用AOA算法选择簇头,提高节点的生存时间。该方法提出了一种新的基于链的路由方法,用于优化基于物联网的WSN框架中的信息传输。通过与现有方法的比较,验证了所提方法的有效性。实验结果表明,该协议在吞吐量(96 kbps)、分组传送率(37%)、网络延迟(0.028 ms)和平均能耗(0.52 J)等方面均优于现有协议。
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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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