利用睡眠周期调制能量采集,在三层 5G 超密集 HetNet 中实现可持续绿色通信

IF 2.1 4区 计算机科学 Q3 COMPUTER SCIENCE, INFORMATION SYSTEMS Wireless Networks Pub Date : 2024-06-24 DOI:10.1007/s11276-024-03765-7
Arijeet Ghosh, Iti Saha Misra
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引用次数: 0

摘要

近来,数据需求量激增的应用要求多层超密集异构网络(UDHN)的部署模式发生转变,这涉及在传统的宏蜂窝网络下密集部署一层以上的小蜂窝。然而,更高的数据传输速率和密集部署的小蜂窝 eNodeB(SeNB)可能会导致网络能耗上升,从而增加移动运营商的运营支出。为了解决这个问题,我们在这项工作中主要提出了基于 M/M/1 队列理论的 SeNB 策略性休眠策略,并根据能效和区域能耗比等性能指标,研究了该策略对降低拟议的三层 UDHN(由一层宏 eNodeB 和两层 SeNB 组成)能耗的影响。此外,我们还为 SeNB 引入了一种新型睡眠周期调制能量收集技术,以确保能源资源的合理利用。我们还开发了一个基于连续时间马尔可夫链的分析模型,以评估所提出的 SCMEH 方法的能量利用率。全面的性能分析表明,在 HetNet 下实施支持 SCMEH 的集成 SeNB 不仅能在并发的时变城市电信交通条件下保证 QoS 要求,还能通过从根本上控制全天每小时的估计功耗来确保可持续绿色通信。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Enabling sustainable green communication in three-tier 5G ultra dense HetNet with sleep cycle modulated energy harvesting

The recent upsurge of data-demanding applications has necessitated a paradigm shift in deployment scenario in the direction of Multi-tier Ultra-Dense Heterogeneous networks (UDHN), which involve the dense deployment of more than one tier of small cells under-laying traditional macro cellular networks. However, higher data rates and the dense deployment of Small cell eNodeBs (SeNBs) elicit a possible escalation of network energy consumption which stirs up the mobile operators' operating expenditure. To deal with this, primarily, in this work, we present the Strategic Sleeping Policy of the SeNBs based on M/M/1 queuing theory and investigate its impact in reducing the power consumption of the proposed three-tier UDHN which consists of one tier of Macro eNodeB and two tiers of SeNBs based on performance metrics like Energy Efficiency and Area Energy Consumption Ratio. Further, we also introduce a novel Sleep Cycle Modulated Energy Harvesting Technique for SeNBs to ensure proper utilization of energy resources. An analytical model based on Continuous Time Markov Chain is also developed to evaluate the Energy Utilization of the proposed SCMEH method. The comprehensive performance analysis reveals that the implementation of integrated SCMEH enabled SeNBs under HetNet can not only guarantee QoS requirements under concurrent time-varying urban tele-traffic conditions but also ensure Sustainable Green Communication by radically controlling the estimated power consumption per hour basis throughout a day.

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来源期刊
Wireless Networks
Wireless Networks 工程技术-电信学
CiteScore
7.70
自引率
3.30%
发文量
314
审稿时长
5.5 months
期刊介绍: The wireless communication revolution is bringing fundamental changes to data networking, telecommunication, and is making integrated networks a reality. By freeing the user from the cord, personal communications networks, wireless LAN''s, mobile radio networks and cellular systems, harbor the promise of fully distributed mobile computing and communications, any time, anywhere. Focusing on the networking and user aspects of the field, Wireless Networks provides a global forum for archival value contributions documenting these fast growing areas of interest. The journal publishes refereed articles dealing with research, experience and management issues of wireless networks. Its aim is to allow the reader to benefit from experience, problems and solutions described.
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