Today, Wi-Fi is over 25 years old. Yet, despite sharing the same branding name, today's Wi-Fi boasts entirely new capabilities that were not even on the roadmap 25 years ago. This article aims to provide a holistic and comprehensive technical and historical tutorial on Wi-Fi, beginning with IEEE 802.11b (Wi-Fi 1) and looking forward to IEEE 802.11bn (Wi-Fi 8). This is the first tutorial article to span these eight generations. Rather than a generation-by-generation exposition, we describe the key mechanisms that have advanced Wi-Fi. We begin by discussing spectrum allocation and coexistence, and detailing the IEEE 802.11 standardization cycle. Second, we provide an overview of the physical layer and describe key elements that have enabled data rates to increase by over 1,000x. Third, we describe how Wi-Fi Medium Access Control has been enhanced from the original Distributed Coordination Function to now include capabilities spanning from frame aggregation to wideband spectrum access. Fourth, we describe how Wi-Fi 5 first broke the one-user-at-a-time paradigm and introduced multi-user access. Fifth, given the increasing use of mobile, battery-powered devices, we describe Wi-Fi's energy-saving mechanisms over the generations. Sixth, we discuss how Wi-Fi was enhanced to seamlessly aggregate spectrum across 2.4 GHz, 5 GHz, and 6 GHz bands to improve throughput, reliability, and latency. Finally, we describe how Wi-Fi enables nearby Access Points to coordinate in order to improve performance and efficiency. In the Appendix, we further discuss Wi-Fi developments beyond 802.11bn, including integrated mmWave operations, sensing, security and privacy extensions, and the adoption of AI/ML.


翻译:如今,Wi-Fi已走过超过二十五年的发展历程。然而,尽管沿用相同的品牌名称,当今的Wi-Fi已具备二十五年前技术路线图中尚未规划的崭新能力。本文旨在提供一份全面而综合的Wi-Fi技术与历史综述,从IEEE 802.11b(Wi-Fi 1)开始,并展望至IEEE 802.11bn(Wi-Fi 8)。这是首篇横跨这八个代际的综述性文章。我们并非逐代阐述,而是着重描述推动Wi-Fi演进的关键机制。首先,我们讨论频谱分配与共存技术,并详述IEEE 802.11标准化进程。其次,概述物理层技术,阐释使数据传输速率提升超过1000倍的核心要素。第三,阐述Wi-Fi媒体访问控制机制如何从最初的分布式协调功能逐步增强,现已涵盖从帧聚合到宽带频谱接入的多项能力。第四,说明Wi-Fi 5如何首次突破单用户接入范式并引入多用户访问机制。第五,针对移动电池供电设备日益普及的现状,梳理各代Wi-Fi的节能机制演进。第六,探讨Wi-Fi如何通过无缝聚合2.4 GHz、5 GHz和6 GHz频段频谱来提升吞吐量、可靠性与降低时延。最后,解析邻近接入点如何通过协同工作以提升系统性能与效率。在附录中,我们进一步探讨802.11bn标准之外的Wi-Fi发展方向,包括集成毫米波操作、感知技术、安全隐私扩展以及人工智能/机器学习的应用。

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网络情报(WI)是网络情报联盟(WIC)的官方期刊,WIC是一个国际组织,致力于促进网络情报时代的合作科研和工业发展。WI寻求与该领域的主要协会和国际会议合作。WI是一份同行评议的期刊,每年出版四期,电子版和纸质版都有。 官网地址:http://dblp.uni-trier.de/db/journals/wias/
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