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CTIA:2024 Wi-Fi历史的经验教训分析报告:中频频谱的过度分配-如何优化频谱分配及利用率(英文版)(22页).pdf

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1、Richard BennettOCTOBER 2024LESSONS FROM THE HISTORY OF Wi-Fi Introduction On April 3,1973,Marty Cooper made the worlds first public cellphone call outside the Midtown Hilton in New York.After this dramatic beginning he called a rival to declare victory the cellular network became the predominant for

2、m of worldwide electronic communication.While the wired telecom network supported 11 million subscribers after its first 110 years of operation,1 cellular went from zero to nine billion in 40 years.2 While cellular was taking off,regulators created a novel unlicensed spectrum regime,3 chiefly suited

3、 for limited-distance networks such as Wi-Fi,4 Bluetooth,and small IoT networks Zigbee and Z-Wave.5 Wi-Fi alone connects to nearly 20 billion devices6 in the homes and offices of the worlds 1.4 billion fixed broadband subscribers.7 Unlike the mobile networks that descended from Coopers first call,Wi

4、-Fi is quite limited in terms of coverage,capability,mobility,and security,even for public Wi-Fi applications.Wireless networks chiefly depend on radio frequency(RF)spectrum;hence,the demand for this resource has increased as the numbers of users and devices have grown.The regulatory response to spe

5、ctrum demand in the US has been peculiar.Our FCC has granted four to seven times as much mid-band to unlicensed Wi-Fi as to our extremely efficient licensed networks.8 In contrast,Japan allocates equal amounts of mid-band to licensed and unlicensed.Nation-by-nation,allocation strategies and usage pa

6、tterns are quite diverse.1 OECD,OECD Communications Outlook 1999,(OECD Publishing,1999),http:/www.oecd-ilibrary.org/science-and-technology/oecd-communications-outlook-1999_comms_outlook-1999-en.2“Mobile Phone Subscriptions Worldwide 2023,”Statista,accessed May 5,2024,https:/ of Spread Spectrum Syste

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本文主要探讨了Wi-Fi技术的发展历程和未来趋势。文章首先回顾了Wi-Fi的起源,从1985年FCC的扩频命令到1990年NCR的WaveLAN,再到1997年IEEE 802.11标准的发布。随后,文章分析了不同代Wi-Fi技术(从Wi-Fi 4到Wi-Fi 7)的性能提升,指出Wi-Fi 4带来了最大的性能提升,而Wi-Fi 7的性能提升则主要得益于并行操作而非更宽的信道。文章还讨论了Wi-Fi的模拟预测和实际测试结果之间的差异,指出连续流量模型过于理想化,而实际流量模式更为复杂。最后,文章指出Wi-Fi面临的挑战是未经协调的共享,并讨论了Wi-Fi 8可能的发展方向,包括提高可靠性、降低延迟和提高频谱利用率。
Wi-Fi发展历程中,哪些技术革新带来了显著的性能提升? 为什么说Wi-Fi的原始罪在于无协调的共享? Wi-Fi 7相比前代标准有哪些改进和不足?
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