新一代多址近场通信初探

IF 23.2 1区 计算机科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Chongjun Ouyang;Zhaolin Wang;Yan Chen;Xidong Mu;Peiying Zhu
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引用次数: 0

摘要

多天线技术正朝着超大孔径阵列和超高频率的方向发展,推动着下一代多址(NGMA)技术的发展。这种演变伴随着近场通信(nfc)的出现,其特点是球形波传播,这为信道引入了额外的范围维度,并提高了系统吞吐量。在此背景下,介绍了基于教程的NFC入门,强调其在多用户通信和多址(MA)中的应用。主要研究了以下几个方面:1)综述了常用的近场信道模型及其在各种近场条件下的简化;2)在此基础上,分析了NFC-MA的信息论容量限制,包括下行和上行场景下的和速率容量和容量区域的推导及其上限;3)详细研究了近场多用户波束形成设计,在空间和波数(角)域提供了低复杂度和有效的NFC-MA设计方法。在这些研究中,将近场干涉管理与远场干涉管理进行了比较,以突出其在干扰管理方面的优势和灵活性,从而为实现NGMA奠定基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Primer on Near-Field Communications for Next-Generation Multiple Access
Multiple-antenna technologies are advancing toward the development of extremely large aperture arrays and the utilization of extremely high frequencies, driving the progress of next-generation multiple access (NGMA). This evolution is accompanied by the emergence of near-field communications (NFCs), characterized by spherical-wave propagation, which introduces additional range dimensions to the channel and enhances system throughput. In this context, a tutorial-based primer on NFC is presented, emphasizing its applications in multiuser communications and multiple access (MA). The following areas are investigated: 1) the commonly used near-field channel models are reviewed along with their simplifications under various near-field conditions; 2) building upon these models, the information-theoretic capacity limits of NFC-MA are analyzed, including the derivation of the sum-rate capacity and capacity region, and their upper limits for both downlink and uplink scenarios; and 3) a detailed investigation of near-field multiuser beamforming design is presented, offering low-complexity and effective NFC-MA design methodologies in both the spatial and wavenumber (angular) domains. Throughout these investigations, near-field MA is compared with its far-field counterpart to highlight its superiority and flexibility in terms of interference management, thereby laying the groundwork for achieving NGMA.
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来源期刊
Proceedings of the IEEE
Proceedings of the IEEE 工程技术-工程:电子与电气
CiteScore
46.40
自引率
1.00%
发文量
160
审稿时长
3-8 weeks
期刊介绍: Proceedings of the IEEE is the leading journal to provide in-depth review, survey, and tutorial coverage of the technical developments in electronics, electrical and computer engineering, and computer science. Consistently ranked as one of the top journals by Impact Factor, Article Influence Score and more, the journal serves as a trusted resource for engineers around the world.
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