论文标题

全光谱6G的能量自我可持续性

Energy Self-Sustainability in Full-Spectrum 6G

论文作者

Hu, Jie, Wang, Qing, Yang, Kun

论文摘要

从6 GHz到THz的全光谱将以6G的速度利用可见光,以达到前所未有的钥匙表现指标(KPI)。但是,网络基础架构将消耗大量的能源,而所有物体(IOE)设备的大量部署互联网功能受嵌入式电池的限制。因此,本文提出了能量自我可持续的6G。首先,它可以通过利用无细胞和空中的访问网络以及实施智能全息环境来实现全网络范围的能源效率。其次,通过利用射频/可见光信号来提供按需无线功率传输(WPT)并启用被动反向散射通信,``零能源''设备可能成为现实。此外,IOE设备会积极调整其收发器以更好地表现动态环境。本文旨在乍一看能源自我维持6G的主要设计原理。

Full-spectrum ranging from sub 6 GHz to THz and visible light will be exploited in 6G in order to reach unprecedented key-performance-indicators (KPIs). However, extraordinary amount of energy will be consumed by network infrastructure, while functions of massively deployed Internet of Everything (IoE) devices are limited by embedded batteries. Therefore, energy self-sustainable 6G is proposed in this article. First of all, it may achieve network-wide energy efficiency by exploiting cell-free and airborne access networks as well as by implementing intelligent holographic environments. Secondly, by exploiting radio-frequency/visible light signals for providing on-demand wireless power transfer (WPT) and for enabling passive backscatter communication, ``zero-energy'' devices may become a reality. Furthermore, IoE devices actively adapt their transceivers for better performance to a dynamic environment. This article aims to provide a first glance at primary designing principles of energy self-sustainable 6G.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源