Green and Safe 6G Wireless Networks: A Hybrid Approach

IF 5.3 2区 计算机科学 Q1 TELECOMMUNICATIONS
Haneet Kour;Rakesh Kumar Jha;Sanjeev Jain
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Abstract

With the wireless Internet access being increasingly popular with services such as HD video streaming and so on, the demand for high data consuming applications is also rising. This increment in demand is coupled with a proportional rise in the power consumption. It is required that the Internet traffic is offloaded to technologies that serve the users and contribute in energy consumption. There is a need to decrease the carbon footprint in the atmosphere and also make the network safe and reliable. In this article we propose a hybrid system of RF (Radio Frequency) and VLC (Visible Light Communication) for indoor communication that can provide communication along with illumination with least power consumption. The hybrid network is viable as it utilizes power with respect to the user demand and maintains the required Quality of Service (QoS) and Quality of Experience (QoE) for a particular application in use. This scheme aims for Green Communication and reduction in Electromagnetic (EM) Radiation. A comparative analysis for RF communication, Hybrid (RF+ VLC) and pure VLC is made and simulations are carried out using Python, Scilab and MathWorks tool. The proposal achieves high energy efficiency of about 37%, low Specific Absorption Rate (SAR), lower incident and absorbed power density, complexity and temperature elevation in human body tissues exposed to the radiation. It also enhances the battery lifetime of the mobile device in use by increasing the lifetime approximately by 7 hours as validated from the obtained results. Thus the overall network reliability and safety factor is enhanced with the proposed approach.
绿色安全的 6G 无线网络:混合方法
随着高清视频流等无线上网服务的日益普及,对高数据消耗应用的需求也在不断上升。在需求增长的同时,耗电量也相应增加。因此,需要将互联网流量卸载到为用户提供服务的技术上,同时降低能耗。有必要减少大气中的碳足迹,并使网络安全、可靠。在本文中,我们为室内通信提出了一种射频(RF)和可见光通信(VLC)混合系统,它能以最少的能耗提供通信和照明。这种混合网络是可行的,因为它能根据用户需求利用电能,并保持特定应用所需的服务质量 QoS 和体验质量 QoE。该方案旨在实现绿色通信,减少电磁辐射。使用 Python、Scilab 和 MathWorks 工具对射频通信、混合射频+ VLC 和纯 VLC 进行了比较分析和模拟。该提案实现了约 37% 的高能效、较低的比吸收率 (SAR)、较低的入射和吸收功率密度复杂性以及暴露在辐射下的人体组织的温度升高。此外,它还能延长移动设备的电池寿命,根据获得的结果,电池寿命可延长约 7 个小时。因此,建议的方法提高了整体网络的可靠性和安全系数。
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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来源期刊
IEEE Transactions on Green Communications and Networking
IEEE Transactions on Green Communications and Networking Computer Science-Computer Networks and Communications
CiteScore
9.30
自引率
6.20%
发文量
181
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