论文标题

预期外观:6G网络中的关键启用技术,应用和开放研究主题

A Prospective Look: Key Enabling Technologies, Applications and Open Research Topics in 6G Networks

论文作者

Bariah, Lina, Mohjazi, Lina, Muhaidat, Sami, Sofotasios, Paschalis C., Kurt, Gunes Karabulut, Yanikomeroglu, Halim, Dobre, Octavia A.

论文摘要

设想第五代(5G)的移动网络可以使无线技术的突破性进步有很多突破性的进步,从而在一个平台上提供了多种服务的支持。虽然5G系统的部署在全球范围内扩大规模,但现在是时候向前介绍5G系统了。这是由新兴的社会趋势驱动的,呼吁提供全自动的系统和智能服务,并得到扩展的现实和触觉通信的支持。为了适应其潜在应用的严格要求,这些应用程序是由数据驱动和由极低的延迟,超级可靠,快速和无缝的无线连接来定义的,研究计划目前正集中在第六代(6G)网络的渐进路线图上。在本文中,我们阐明了6G的一些主要促成技术,这些技术有望彻底改变蜂窝网络的基本架构,并提供多种同质的人工智能授权服务,包括分布式通信,控制,计算,传感和能量,从其核心到其最终节点。特别是,本文旨在回答几个与6G框架相关的问题:开发6G的驱动力是什么? 6G的启用技术与5G中的技术有何不同?他们将支持哪些应用程序和互动,而5G将不支持5G?我们通过对6G愿景进行深入研究,并概述了其五种破坏性技术,即Terahertz通信,可编程元信息,基于无人机的通信,反向散射通信和触觉互联网及其潜在应用。然后,通过利用针对每种技术进行调查的最新文献,我们讨论了它们的要求,关键挑战和开放研究问题。

The fifth generation (5G) mobile networks are envisaged to enable a plethora of breakthrough advancements in wireless technologies, providing support of a diverse set of services over a single platform. While the deployment of 5G systems is scaling up globally, it is time to look ahead for beyond 5G systems. This is driven by the emerging societal trends, calling for fully automated systems and intelligent services supported by extended reality and haptics communications. To accommodate the stringent requirements of their prospective applications, which are data-driven and defined by extremely low-latency, ultra-reliable, fast and seamless wireless connectivity, research initiatives are currently focusing on a progressive roadmap towards the sixth generation (6G) networks. In this article, we shed light on some of the major enabling technologies for 6G, which are expected to revolutionize the fundamental architectures of cellular networks and provide multiple homogeneous artificial intelligence-empowered services, including distributed communications, control, computing, sensing, and energy, from its core to its end nodes. Particularly, this paper aims to answer several 6G framework related questions: What are the driving forces for the development of 6G? How will the enabling technologies of 6G differ from those in 5G? What kind of applications and interactions will they support which would not be supported by 5G? We address these questions by presenting a profound study of the 6G vision and outlining five of its disruptive technologies, i.e., terahertz communications, programmable metasurfaces, drone-based communications, backscatter communications and tactile internet, as well as their potential applications. Then, by leveraging the state-of-the-art literature surveyed for each technology, we discuss their requirements, key challenges, and open research problems.

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