太赫兹波段的设备到设备通信:现实实施面临的开放挑战

Q1 Social Sciences
Zhaona Wu, K. Umebayashi, Janne J. Lehtomäki, N. Zorba
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引用次数: 6

摘要

在实现数据速率要求方面起主要作用的关键参数之一是频谱或带宽,这是稀缺且昂贵的。因此,需要制定频谱管理策略来优化其使用,以满足所有需求和承诺的数据速率增长。另一种应对频谱短缺的策略是转向更高的频段(太赫兹频段),这预计将在下一个6G通信标准中出现。因此,重要的是不仅要开发在这些频段上实现高效动态频谱接入和共享的新技术,而且要开发适合太赫兹频段的信道模型。与此同时,卸载机制在蜂窝网络中非常有前途,在蜂窝网络中,研究领域已经提出了大量的选择,如设备到设备、授权辅助访问或WiFi卸载等;但它们在高频(太赫兹波段)下的行为仍不清楚。因此,本文将讨论影响未来网络的两项技术:太赫兹信道建模/通信和卸载机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Device-to-device Communications at the Terahertz Band: Open Challenges for Realistic Implementation
One of the key parameters that plays a major role in enabling the data rate requirements is spectrum or bandwidth, which is scarce and expensive. Therefore, spectrum management policies are required to optimize its usage to meet all the requirements and the promised data rate growth. Another strategy to deal with spectrum scarcity is to move toward higher frequency bands (terahertz bands), which are expected in the next 6G communication standard. It is therefore important to develop not only new techniques that enable efficient dynamic spectrum access and sharing at such bands, but also suitable channel models for the terahertz bands. Meanwhile, offloading mechanisms are very promising for cellular networks where a plethora of options have been proposed in the research arena in terms of device-to-device, licensed assisted access, or WiFi offloading, among others; but their behavior, when operated at high frequencies (terahertz band) remains unclear. Therefore, this article will tackle two technologies that will shape future networks: terahertz channel modeling/communications and offloading mechanisms.
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来源期刊
CiteScore
10.80
自引率
0.00%
发文量
55
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