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Multibeam Antenna Technologies for 5G Wireless Communications

IEEE Transactions on Antennas and Propagation · 2017 · Vol. 65(12) · pp. 6231–6249
Wei HongZhi Hao JiangChao YuJianyi ZhouPeng ChenZhiqiang YuHui ZhangBinqi YangXingdong PangMei JiangYu Jian ChengMustafa K. Taher Al‐NuaimiYan ZhangJixin ChenShiwen He

Abstract

With the demanding system requirements for the fifth-generation (5G) wireless communications and the severe spectrum shortage at conventional cellular frequencies, multibeam antenna systems operating in the millimeter-wave frequency bands have attracted a lot of research interest and have been actively investigated. They represent the key antenna technology for supporting a high data transmission rate, an improved signal-to-interference-plus-noise ratio, an increased spectral and energy efficiency, and versatile beam shaping, thereby holding a great promise in serving as the critical infrastructure for enabling beamforming and massive multiple-input multiple-output (MIMO) that boost the 5G. This paper provides an overview of the existing multibeam antenna technologies which include the passive multibeam antennas (MBAs) based on quasi-optical components and beamforming circuits, multibeam phased-array antennas enabled by various phase-shifting methods, and digital MBAs with different system architectures. Specifically, their principles of operation, design, and implementation, as well as a number of illustrative application examples are reviewed. Finally, the suitability of these MBAs for the future 5G massive MIMO wireless systems as well as the associated challenges is discussed.

Antenna Design and AnalysisMicrowave Engineering and WaveguidesAntenna Design and OptimizationBeamformingMIMOComputer scienceElectronic engineeringWirelessAntenna (radio)Antenna arraySpectral efficiencyPhased arrayTelecommunications

Funding

  • National Natural Science Foundation of China
  • National Science and Technology Major Project
  • Specialized Research Fund for the Doctoral Program of Higher Education of China
Citations
1,130
FWCI
936.65
field-weighted impact
References
220
Percentile
100%
vs. same field & year
Citations per year
Cited by
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References
Millimeter-wave CMOS design
IEEE Journal of Solid-State Circuits · 2005 · 708 citations
An introduction to millimeter-wave mobile broadband systems
IEEE Communications Magazine · 2011 · 2,603 citations
Five disruptive technology directions for 5G
IEEE Communications Magazine · 2014 · 3,816 citations
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