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Design and Demonstration of a TDD-Based Central-Coordinated Resource-Reserved Multiple Access (CRMA) Scheme for Bidirectional VLC Networking

机译:基于TDD的中央协调资源保留的多址(CRMA)方案的设计与演示,用于双向VLC网络

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摘要

The sharply growing demand for increased transmission capacity and bandwidth in last meter and last mile access networks together with the commercialization of fifth generation (5G) wireless systems has been opening up new opportunities for non-radio frequency (RF)-based wireless technologies. Visible light communications (VLC) technology is a potential candidate for access networking in 5G, which offers a higher spectral efficiency than RF-based Femtocell networks by three orders of magnitude. This paper proposes an all wireless optical bidirectional VLC multiple access scheme for pure VLC network access points in terminals. Centralized coordination is adopted to reduce the system complexity. And reservation of resource is introduced to guarantee collision avoidance during data frame transmission. The proposed multiple access scheme introduces special system parameters to achieve the balance of system throughput and access latency. The feasibility of the proposed scheme is verified by both theoretical analysis and experimental investigation. We show that the proposed scheme is suitable for a bidirectional pure VLC access network and can be used as a supplement in the IEEE 802.11 bb for 5G+bidirectional VLC application scenarios.
机译:在最后一米和最后一英里接入网络中对增长传输能力和带宽的急剧增长的需求与第五代(5G)无线系统的商业化一起为非射频(RF)的无线技术开辟了新的机会。可见光通信(VLC)技术是5G中访问网络的潜在候选者,其比基于RF的毫微微小区网络提供更高的频谱效率,通过三个数量级。本文提出了用于终端纯VLC网络接入点的所有无线光学双向VLC多访问方案。采用集中协调来降低系统复杂性。引入资源的保留,以保证数据帧传输期间的碰撞。所提出的多个访问方案介绍了特殊的系统参数,以实现系统吞吐量和访问延迟的平衡。通过理论分析和实验调查验证了拟议方案的可行性。我们表明,该方案适用于双向纯VLC接入网络,可以用作5G +双向VLC应用场景的IEEE 802.11 BB中的补充。

著录项

  • 来源
    《Quality Control, Transactions》 |2021年第1期|7856-7868|共13页
  • 作者单位

    State Key Laboratory of Information Photonics and Optical Communications Beijing University of Posts and Telecommunications Beijing China;

    State Key Laboratory of Information Photonics and Optical Communications Beijing University of Posts and Telecommunications Beijing China;

    State Key Laboratory of Information Photonics and Optical Communications Beijing University of Posts and Telecommunications Beijing China;

    Optical Communications Research Group Faculty of EE Northumbria University Newcastle upon Tyne U.K.;

    University of Peloponnese Tripoli Greece;

    University of Peloponnese Tripoli Greece;

    State Key Laboratory of Information Photonics and Optical Communications Beijing University of Posts and Telecommunications Beijing China;

    State Key Laboratory of Information Photonics and Optical Communications Beijing University of Posts and Telecommunications Beijing China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Visible light communication; Downlink; Interference; Light emitting diodes; OFDM; NOMA; 5G mobile communication;

    机译:可见光通信;下行链路;干扰;发光二极管;OFDM;NOMA;5G移动通信;
  • 入库时间 2022-08-18 22:58:57

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