Design, developments, and applications of 5G antennas: a review

被引:20
作者
Pant, Mohit [1 ]
Malviya, Leeladhar [1 ]
机构
[1] Shri GS Inst Technol & Sci, Indore, India
关键词
Fifth-generation (5G); antenna array; multiple-input multiple-output (MIMO); mutual coupling; mm-wave; gain; isolation; diversity; beamforming; DEFECTED GROUND STRUCTURE; SWITCHED-BEAM ANTENNA; MUTUAL COUPLING REDUCTION; MEAN EFFECTIVE GAIN; PATCH ANTENNA; MIMO ANTENNA; MICROSTRIP ANTENNAS; RADIATION-PATTERN; ARRAY ANTENNA; BUTLER MATRIX;
D O I
10.1017/S1759078722000095
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
As the demand for high data rates is increasing day by day, fifth-generation (5G) becomes the leading-edge technology in wireless communications. The main objectives of the 5G communication system are to enhance the data rates (up to 20 Gbps) and capacity, ultra-low latency (1 ms), high reliability, great flexibility, and enhance device to device communication. The mentioned objectives lead to the hunting of the millimeter-wave frequency range which lies from 30 to 300 GHz for 5G wireless communications. To design such high capacity, low latency, and flexible systems, antenna design is one of the crucial parts. In this paper, a survey is presented on various antenna designs with their fabrication on different types of substrates such as Rogers RT/duroid 5880, Rogers RO4003C, Taconic TLY-5, etc., at different 5G frequency bands. The different configurations of antennas that covered antenna arrays, multiple-input multiple-output (MIMO) antennas, phased antennas, and beamforming antennas are discussed in detail with their applications. The design of MIMO antennas in the 5G frequency band occupied less space so mutual coupling reduction techniques are required for maintaining the required gain, efficiency, and isolation. This paper is also focused on the mutual coupling reduction techniques and diversity in MIMO antennas.
引用
收藏
页码:156 / 182
页数:27
相关论文
共 141 条
  • [1] Broadband Proximity-Coupled Microstrip Planar Antenna Array for 5G Cellular Applications
    Abu Diawuo, Henry
    Jung, Young-Bae
    [J]. IEEE ANTENNAS AND WIRELESS PROPAGATION LETTERS, 2018, 17 (07): : 1286 - 1290
  • [2] Efficient Millimeter-Wave Antenna Based on the Exploitation of Microstrip Line Discontinuity Radiation
    Al-Alem, Yazan
    Kishk, Ahmed A.
    [J]. IEEE TRANSACTIONS ON ANTENNAS AND PROPAGATION, 2018, 66 (06) : 2844 - 2852
  • [3] Low-Profile and Wideband Microstrip Antenna With Stable Gain for 5G Wireless Applications
    An, Wenxing
    Li, Yue
    Fu, Haipeng
    Ma, Jianguo
    Chen, Weigang
    Feng, Botao
    [J]. IEEE ANTENNAS AND WIRELESS PROPAGATION LETTERS, 2018, 17 (04): : 621 - 624
  • [4] Spectrum Considerations for 5G Mobile Communication Systems
    Ancans, Guntis
    Bobrovs, Vjaceslays
    Ancans, Arnis
    Kalibatiene, Diana
    [J]. ICTE 2016, 2017, 104 : 509 - 516
  • [5] Mean Effective Gain of Mobile Antennas in Line-of-Sight Street Microcells With Low Base Station Antennas
    Ando, Atsuya
    Taga, Tokio
    Kondo, Akira
    Kagoshima, Kenichi
    Kubota, Shuji
    [J]. IEEE TRANSACTIONS ON ANTENNAS AND PROPAGATION, 2008, 56 (11) : 3552 - 3565
  • [6] What Will 5G Be?
    Andrews, Jeffrey G.
    Buzzi, Stefano
    Choi, Wan
    Hanly, Stephen V.
    Lozano, Angel
    Soong, Anthony C. K.
    Zhang, Jianzhong Charlie
    [J]. IEEE JOURNAL ON SELECTED AREAS IN COMMUNICATIONS, 2014, 32 (06) : 1065 - 1082
  • [7] [Anonymous], 2020, INT J RF MICROW C E, V30
  • [8] [Anonymous], 2015, 23760 ITU RM
  • [9] The Effect of Antenna Mutual Coupling on MIMO Radar System Performance
    Arnold, Benjamin T.
    Jensen, Michael A.
    [J]. IEEE TRANSACTIONS ON ANTENNAS AND PROPAGATION, 2019, 67 (03) : 1410 - 1416
  • [10] Defected Ground Structure in the perspective of Microstrip Antennas: A Review
    Arya, Ashwini K.
    Kartikeyan, M. V.
    Patnaik, A.
    [J]. FREQUENZ, 2010, 64 (5-6) : 79 - 84