面向 6G 的智能通信和标准化新方向

Anjanabhargavi Kulkarni, R. H. Goudar, Vijayalaxmi N. Rathod, D. G. M., Geetabai S. Hukkeri
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引用次数: 0

摘要

无线通信技术的飞速发展使全球数字数据传输变得更加容易。在人工智能的全面协助下,第六代(6G)系统--无线通信的新典范--预计将在 2027 年至 2030 年间投入使用。与 5G 系统相比,更快的系统容量、更快的数据传输速率、更低的延迟、更高的安全性和更好的服务质量(QoS)是 5G 系统之外需要解决的一些主要问题。将对更大网络覆盖范围、更低时延和更高数据传输速率的日益增长的需求结合起来,是 6G 的目标。为满足这些需求并启用新的服务和应用,建议实施智能通信。本文概述了实施 5G 以外智能通信的主要推动因素和促进因素。文章为在未来网络中集成 6G 智能通信提供了新的适应性和标准化前景,并概述了 6G 的要求和使用场景。文章还从灵活性的角度强调了 6G 的潜力和关键推动因素。报告在对比 5G 和 6G 通信的同时,还审视了过去过渡中的关键研究差距,如频谱效率、网络参数、基础设施部署和安全缺陷。要克服这些挑战,必须实现 6G 研究领域的现代化。因此,这篇综述文章重点探讨了 6G 无线通信及其网络架构的重要性,并介绍了从 5G 到 6G 的技术范式转变。此外,文章还强调了人工智能、物联网、大数据管理、无线移动网络、大规模多输入多输出(MIMO)、量子通信、区块链技术、太赫兹通信(THz)、无细胞通信和智能反射面等热门领域的研究目标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
New directions for adapting intelligent communication and standardization towards 6G
Rapid advancements in wireless communication technology have made it easier to transfer digital data globally. With the complete assistance of artificial intelligence, the sixth-generation (6G) system—a new paradigm in wireless communication—is anticipated to be put into use between 2027 and 2030. Faster system capacity, faster data rate, lower latency, higher security, and better quality of service (QoS) in comparison to the 5G system are some of the main concerns that need to be addressed beyond 5G. Combining the growing need for more network coverage, lower latency, and greater data rates is the aim of 6G. It is recommended that to meet these needs and enable new services and applications, intelligent communication be implemented. The main enablers and facilitators for implementing intelligent communication beyond 5G are outlined in this paper. The article provides the horizon for new adaptations and standardization for integrating 6G intelligent communication in future networks and outlines the requirements and use-case scenarios for 6G. It also highlights the potential of 6G and key enablers from the standpoint of flexibility. It examines key research gaps like spectrum efficiency, network parameters, infrastructure deployment, and security flaws in past transitions while contrasting 5G and 6G communication. To overcome these challenges, modernizing 6G research domains are essential. Therefore, this review article focuses on the importance of 6G wireless communication and its network architecture, which also provides the technological paradigm shift from 5G to 6G. Furthermore, it highlights popular domains such as Artificial Intelligence, Internet of Things, Managing Big Data, Wireless Mobile networks, and Massive MIMO (Multiple Input Multiple Output), Quantum communication, Block chain Technology, Terahertz Communications (THz), Cell-free Communications and Intelligent Reflecting Surface as research objectives.
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