TY - JOUR
T1 - A Compact Filtering Antenna System with Wide-Angle Scanning Capability for V2I Communication
AU - Han, Chuang
AU - Li, Tong
AU - Zhang, Zhaolin
AU - Wang, Ling
AU - Yang, Guangwei
N1 - Publisher Copyright:
Copyright © 2024 Chinese Institute of Electronics.
PY - 2024/3
Y1 - 2024/3
N2 - A compact filtering antenna system with wide-angle scanning is proposed for vehicle to infrastructure (V2I) communication which would handle complex communication scenarios. In this work, a wide beam filtering antenna is realized by using some inductive resistance structures such as metal pins and pillars, and capacitive structures such as slots, parasitical patches to produce the radiation nulls at two sides of the operating frequency band and improve the impedance matching in the passband. Meanwhile, the wide beam capability is also realized by the above structure. Furthermore, two H- and E-plane linear arrays are designed for the beam scanning capability with filtering characteristics based on the proposed antenna. To verify the proposed design concept, a prototype is fabricated and measured. The measurement and simulation agree well, demonstrating an excellent filtering characteristic with the operating frequency band from 3.18 to 3.45 GHz (about 8.1%), the high total efficiency of about 88%, and 3-dB-beamwidth of more than 100° and 120° in the above two arrays, respectively. Additionally, the proposed arrays can realize the beam scanning up to the coverage of 112° and 120° with a lower gain reduction and a good filtering characteristic, respectively.
AB - A compact filtering antenna system with wide-angle scanning is proposed for vehicle to infrastructure (V2I) communication which would handle complex communication scenarios. In this work, a wide beam filtering antenna is realized by using some inductive resistance structures such as metal pins and pillars, and capacitive structures such as slots, parasitical patches to produce the radiation nulls at two sides of the operating frequency band and improve the impedance matching in the passband. Meanwhile, the wide beam capability is also realized by the above structure. Furthermore, two H- and E-plane linear arrays are designed for the beam scanning capability with filtering characteristics based on the proposed antenna. To verify the proposed design concept, a prototype is fabricated and measured. The measurement and simulation agree well, demonstrating an excellent filtering characteristic with the operating frequency band from 3.18 to 3.45 GHz (about 8.1%), the high total efficiency of about 88%, and 3-dB-beamwidth of more than 100° and 120° in the above two arrays, respectively. Additionally, the proposed arrays can realize the beam scanning up to the coverage of 112° and 120° with a lower gain reduction and a good filtering characteristic, respectively.
KW - Beam scanning
KW - Beam steering
KW - Filtering antenna
KW - Phased array
KW - Wide beam
UR - https://www.scopus.com/pages/publications/105024063286
U2 - 10.23919/cje.2023.00.039
DO - 10.23919/cje.2023.00.039
M3 - 文章
AN - SCOPUS:105024063286
SN - 1022-4653
VL - 33
SP - 516
EP - 526
JO - Chinese Journal of Electronics
JF - Chinese Journal of Electronics
IS - 2
ER -