高能效无线传感器网络服务质量优化中的定位和部署考虑因素

Q4 Computer Science
Jeya Rani D., Nagarajan Munusamy
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引用次数: 0

摘要

- 无线传感器网络(WSN)具有监测和收集各种情况下数据的研究能力,因此在广泛的应用中越来越受欢迎。然而,在保持能源效率的同时实现服务质量(QoS)仍然是一项挑战。针对高能效 WSN 的 QoS 优化,本研究探讨了定位和部署方面的关键问题。定位传感器节点的精确位置对于依赖于定位的有效数据融合和路由算法至关重要。本研究比较和对比了几种定位方法,包括基于测距的方法和无测距方法,并解释了其优点和缺点。本研究还调查了各种部署策略对 QoS 和节能的影响,包括优化节点位置、提高覆盖率和增加节点密度。这项研究的目标是找出如何在低功耗无线网络中优化 QoS,将延迟、吞吐量和稳定性等服务质量特性纳入路由算法的设计中。目前的路由协议,如低能耗自适应聚类层次(LEACH),在优化服务质量的同时最大限度地降低能耗的能力得到了评估。此外,本研究还探讨了几种有助于在降低能耗的同时提高服务质量的方法,如能量感知路由、自适应占空比和数据聚合方法。通过全面检查和评估定位算法、部署问题和路由协议,本研究为旨在优化高能效 WSN 服务质量的研究人员和从业人员提供了实用的理论见解。在这些成果和建议的帮助下,在各种领域部署有用、可靠的 WSN 将成为可能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Localization and Deployment Considerations into Quality of Service Optimization for Energy-Efficient Wireless Sensor Networks
– Wireless Sensor Networks (WSNs) have been more popular for a wide range of applications due to research ability to monitor and gather data from a variety of situations. However, it remains challenging to achieve Quality of Service (QoS) while maintaining energy efficiency. In the context of QoS optimization for energy-efficient WSNs, this study investigates the crucial issues of localization and deployment concerns. Localization the precise positions of sensor nodes are crucial for effective data fusion and routing algorithms that rely on localization. This study compares and contrasts several localization methods, including range-based and range-free approaches, and explains benefits and drawbacks. The study also investigates the effects on QoS and energy savings of various deployment strategies, including optimizing node location, boosting coverage, and increasing node density. The goal of this research is to find out how to optimize QoS in low-power wireless networks by including latency, throughput, and stability, among other quality of service characteristics, into the design of routing algorithms. Current routing protocols, like Low-Energy Adaptive Clustering Hierarchy (LEACH), are assessed for ability to optimize quality of service while minimizing energy consumption. In addition, this study explores several approaches that might help enhance QoS while reducing energy consumption, such as energy-aware routing, adaptive duty cycling, and data aggregation methods. By thoroughly examining and evaluating localization algorithms, deployment concerns, and routing protocols, this study offers practical and theoretical insights for researchers and practitioners aiming to optimize quality of service in energy-efficient WSNs. Useful and dependable WSN deployments in a wide variety of domains possible with the help of the presented results and suggestions.
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来源期刊
International Journal of Computer Networks and Applications
International Journal of Computer Networks and Applications Computer Science-Computer Science Applications
CiteScore
2.30
自引率
0.00%
发文量
40
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