Substrate-Integrated-Waveguide-Fed Array Antenna Covering 57-71 GHz Band for 5G Applications

被引:131
|
作者
Zhu, Qian [1 ]
Ng, Kung Bo [1 ]
Chan, Chi Hou [1 ]
Luk, Kwai-Man [1 ]
机构
[1] City Univ Hong Kong, Dept Elect Engn, State Key Lab Millimeter Waves, Hong Kong, Hong Kong, Peoples R China
关键词
5G; 60; GHz; array antenna; complementary sources; linear polarization; mm-wave; substrate integrated waveguide (SIW); COST HIGH-GAIN; 60-GHZ BAND; LAYER;
D O I
10.1109/TAP.2017.2723080
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
A wideband linearly polarized antenna element with complementary sources is proposed and exploited for array antennas. The element covers a bandwidth of 38.7% from 50 to 74 GHz with an average gain of 8.7 dBi. The four-way broad wall coupler is applied for the 2 x 2 subarray, which suppresses the cross-polarization of a single element. Based on the designed 2 x 2 subarray, two larger arrays have been designed and measured. The 4 x 4 array exhibits 26.7% bandwidth, fully covering the 57-71 GHz unlicensed band. The 8x8 array antenna covers a bandwidth of 14.5 GHz (22.9%) from 56.1 to 70.6 GHz with a peak gain of 26.7 dBi, and the radiation efficiency is around 80% within the matching band. It is demonstrated that the proposed antenna element and arrays can be used for future 5G applications to cover the 22% bandwidth of the unlicensed band with high gain and low loss.
引用
收藏
页码:6298 / 6306
页数:9
相关论文
共 50 条
  • [31] 2 x 2 Microstrip Patch Antenna Array Fed by Substrate Integrated Waveguide for Radar Applications
    Mikulasek, Tomas
    Georgiadis, Apostolos
    Collado, Ana
    Lacik, Jaroslav
    IEEE ANTENNAS AND WIRELESS PROPAGATION LETTERS, 2013, 12 : 1287 - 1290
  • [32] Triple Band Antenna for 5G Applications
    Amrutha, G. M.
    Sudha, T.
    2018 INTERNATIONAL CONFERENCE ON ADVANCES IN COMPUTING, COMMUNICATIONS AND INFORMATICS (ICACCI), 2018, : 1650 - 1652
  • [33] A 16-Element Phased-Array Transceiver in 130-nm SiGe BiCMOS for Fixed Wireless Access Covering the Full 57-71 GHz Band
    Tomkins, Alex
    Juntunen, Eric
    Poon, Alan
    Golestaneh, Hamed
    Shakoor, Hassan
    Temkine, Grigori
    Nabovati, Ghazal
    Gilanpour, Nima
    Chen, Austin
    Sargsyan, Adrine
    Smith, Nathan
    Ali, Asim
    Law, Kim
    Lynch, Brad
    Farnsworth, Craig
    Lau, Alex
    Hansen, Chris
    Costa, Nelson
    Rashidian, Atabak
    Supinski, Marc
    Riley, Keith
    2020 IEEE RADIO AND WIRELESS SYMPOSIUM (RWS 2020), 2020, : 152 - 155
  • [34] A 28 GHz Beam Steerable Elliptic Microstrip Array Antenna for 5G Applications
    Najafabadi, Amir Mohsen Ahmadi
    Ghani, Firas Abdul
    Tekin, Ibrahim
    2022 16TH EUROPEAN CONFERENCE ON ANTENNAS AND PROPAGATION (EUCAP), 2022,
  • [35] Investigation of Patch Phase Array Antenna Orientation at 28 GHz for 5G Applications
    Yu, Low Ching
    Kamarudin, Muhammad Ramlee
    2016 INTERNATIONAL ELECTRICAL ENGINEERING CONGRESS, IEECON2016, 2016, : 47 - 50
  • [36] LTCC-Integrated Dielectric Resonant Antenna Array for 5G Applications
    Niayesh, Mohsen
    Kouki, Ammar
    SENSORS, 2021, 21 (11)
  • [37] Dual-Polarized Substrate-Integrated-Waveguide Cavity-Backed Monopulse Antenna Array for 5G Millimeter-Wave Applications
    Chu, Chenhao
    Zhu, Jianfeng
    Liao, Shaowei
    Xue, Quan
    Zhu, Anding
    2019 IEEE MTT-S INTERNATIONAL MICROWAVE CONFERENCE ON HARDWARE AND SYSTEMS FOR 5G AND BEYOND (IMC-5G), 2019,
  • [38] 2 x 2 Microstrip Patch Antenna Array Fed by Substrate Integrated Waveguide for Radar Applications
    Baranwal, Chandan
    2017 INTERNATIONAL CONFERENCE ON RECENT INNOVATIONS IN SIGNAL PROCESSING AND EMBEDDED SYSTEMS (RISE), 2017, : 87 - 90
  • [39] A Wideband Millimeter Wave Metasurface Antenna Array Fed by A Substrate Integrated Waveguide
    Wang, Ying
    Chen, Zihao
    2024 IEEE INTERNATIONAL WORKSHOP ON RADIO FREQUENCY AND ANTENNA TECHNOLOGIES, IWRF&AT 2024, 2024, : 222 - 224
  • [40] A broadband wire hexagon antenna array for future 5G communications in 28 GHz band
    Ullah, Hidayat
    Tahir, Farooq A.
    MICROWAVE AND OPTICAL TECHNOLOGY LETTERS, 2019, 61 (03) : 696 - 701