TY - JOUR
T1 - Multibeam Antenna Technologies for 5G Wireless Communications
AU - Hong, Wei
AU - Jiang, Zhi Hao
AU - Yu, Chao
AU - Zhou, Jianyi
AU - Chen, Peng
AU - Yu, Zhiqiang
AU - Zhang, Hui
AU - Yang, Binqi
AU - Pang, Xingdong
AU - Jiang, Mei
AU - Cheng, Yujian
AU - Al-Nuaimi, Mustafa K.Taher
AU - Zhang, Yan
AU - Chen, Jixin
AU - He, Shiwen
N1 - Publisher Copyright:
© 2017 IEEE.
PY - 2017/12
Y1 - 2017/12
N2 - 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.
AB - 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.
KW - Antenna array
KW - beamforming
KW - massive multiple-input multiple-output (MIMO)
KW - millimeter wave (MMW)
KW - multibeam antenna
UR - https://www.scopus.com/pages/publications/85038853796
U2 - 10.1109/TAP.2017.2712819
DO - 10.1109/TAP.2017.2712819
M3 - 文章
AN - SCOPUS:85038853796
SN - 0018-926X
VL - 65
SP - 6231
EP - 6249
JO - IEEE Transactions on Antennas and Propagation
JF - IEEE Transactions on Antennas and Propagation
IS - 12
M1 - 7942144
ER -