60-GHz Groove Gap Waveguide Based Wideband H-Plane Power Dividers and Transitions: For Use in High-Gain Slot Array Antenna

被引:90
|
作者
Farahbakhsh, Ali [1 ]
Zarifi, Davoud [2 ]
Zaman, Ashraf Uz [3 ]
机构
[1] Grad Univ Adv Technol, Sch Engn, Kerman, Iran
[2] Univ Kashan, Sch Elect Engn, Kashan, Iran
[3] Chalmers Univ Technol, Dept Signals & Syst, SE-41296 Gothenburg, Sweden
基金
欧洲研究理事会;
关键词
Feeding network; gap waveguide technology; millimeter-wave techniques; power divider; slot antenna array; CORPORATE-FEED NETWORK; MICROSTRIP; FILTER; NAILS; BED;
D O I
10.1109/TMTT.2017.2699680
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
Wideband design of power dividers, T-junctions, and transitions based on groove gap waveguide (GGW) technology is presented in this paper with the goal to use these components in high-gain millimeter-wave antenna array design at 60-GHz frequency range. Since this GGW technology does not require electrical contact between the different metal layers of a complex 3-D waveguide structure, the fabrication cost and mechanical complexity are decreased. The designed T-junctions and different power dividers exhibit wide operational bandwidth and low output power and phase imbalance over the 60-GHz frequency band. Also, two transitions from GGW to a standard rectangular waveguide have been designed. To validate the performance of the designed components, a 64-way power divider in combination with 256 radiating slots is designed, prototyped, and measured at 60-GHz band. Measurement results agree well with the simulated performance of the complete array antenna, and the antenna gain is more than 32.5 dBi. The total radiation efficiency is more than 80% over the operating frequency range from 57 to 67 GHz. Also, the measured sidelobe levels are found to be agreeing well with the simulated level.
引用
收藏
页码:4111 / 4121
页数:11
相关论文
共 50 条
  • [21] Cavity-backed high-gain switch beam antenna array for 60-GHz applications
    Zhu, Jianfeng
    Peng, Biao
    Li, Shufang
    IET MICROWAVES ANTENNAS & PROPAGATION, 2017, 11 (12) : 1776 - 1781
  • [22] A 97-GHz-Band High-Gain 8 x 8 Waveguide Slot Array Antenna
    Zhong, Zeng-Pei
    Li, Jin
    Xu, Zhihong
    Deng, Shuai
    Yuan, Tao
    2022 IEEE RADIO AND WIRELESS SYMPOSIUM (RWS), 2022, : 98 - 101
  • [23] A Low-Cost and High-Gain 60-GHz Differential Phased Array Antenna in PCB Process
    Zhang, Tao
    Li, Lianming
    Xia, Haiyang
    Ma, Xujun
    Cui, Tie Jun
    IEEE TRANSACTIONS ON COMPONENTS PACKAGING AND MANUFACTURING TECHNOLOGY, 2018, 8 (07): : 1281 - 1291
  • [24] Low-Cost High-Gain and Broadband Substrate-Integrated-Waveguide-Fed Patch Antenna Array for 60-GHz Band
    Li, Yujian
    Luk, Kwai-Man
    IEEE TRANSACTIONS ON ANTENNAS AND PROPAGATION, 2014, 62 (11) : 5531 - 5538
  • [25] 60-GHz High-Gain 8x8 Slot Antenna Array With Low Sidelobe Level in Both E- and H-planes
    Yeh, Yu-Chen
    Chin, Kuo-Sheng
    Tsai, Chi-En
    2021 IEEE MTT-S INTERNATIONAL MICROWAVE AND RF CONFERENCE (IMARC), 2021,
  • [26] D-Band High-Gain Planer Slot Array Antenna Using Gap Waveguide Technology
    Farahbakhsh, Ali
    Zarifi, Davood
    Uz Zaman, Ashraf
    IEEE TRANSACTIONS ON ANTENNAS AND PROPAGATION, 2025, 73 (01) : 594 - 599
  • [27] A New Wide Band and Compact H-Plane Horn Antenna Based on Groove Gap Waveguide Technology
    Mohammadpour, Mohammad
    Mohajeri, Farzad
    Razavi, Seyed Ali
    IEEE TRANSACTIONS ON ANTENNAS AND PROPAGATION, 2022, 70 (01) : 221 - 228
  • [28] A 60GHz Wideband Antenna Array Based on Metasurface with Gap Waveguide (GWG) Divider
    Shi, Chenyun
    Cui, Jie
    Sheng, Weixing
    Han, Yubing
    2019 49TH EUROPEAN MICROWAVE CONFERENCE (EUMC), 2019, : 666 - 669
  • [29] Wideband High-Gain Circularly Polarized Antenna Array on Gap Waveguide for 5G applications
    Wang, Enlin
    Zhang, Tianling
    He, Dandan
    Chen, Lei
    Yang, Jian
    2019 INTERNATIONAL SYMPOSIUM ON ANTENNAS AND PROPAGATION (ISAP 2019), 2019,
  • [30] Bandstop filtering for integrated substrate gap waveguide high-gain and wideband slot antenna for 5G
    Chen, Jianpei
    Shen, Dongya
    Zhang, Xiupu
    INTERNATIONAL JOURNAL OF RF AND MICROWAVE COMPUTER-AIDED ENGINEERING, 2022, 32 (09)