TY - GEN
T1 - Trident Shaped Compact Planar Antenna for Microwave Applications
AU - Yadav, Manish Varun
AU - Singh, Gaurav
AU - Narayanan, Tendral
AU - Kumar, Naveen
N1 - Publisher Copyright:
© 2022 IEEE.
PY - 2022
Y1 - 2022
N2 - A compact planar antenna for X/Ku-band microwave communication is suggested in this paper. The presented geometry is capable of radiating the large frequency band from 6.8 to 20GHz, which covers the X-Band/Ku-Band Communication with high efficiency. The impedance bandwidth of the radiator is 98.5%, with an electrical size of. 34λx.34λx0.034A in lambda. The suggested design includes a modified patch in the trident shape fed by a microstrip line. Rectangular elements have been designed for better resonances at lower modes. The antenna is simulated with an FR4 substrate using CST Simulator. The exact dimensions of the antenna are 15x15x1.5 cubic millimeter. Five stages evolution process is also investigated by simulations, and corresponding S-parameter results are presented. The proposed structure also demonstrates stable radiation patterns across the operating bandwidth. The proposed radiator has a high gain of 3.1 dBi, and an efficiency of 87%. Therefore, it is useful for X-band, and Ku-band, including Radar, Space, Terrestrial, and Satellite microwave communication.
AB - A compact planar antenna for X/Ku-band microwave communication is suggested in this paper. The presented geometry is capable of radiating the large frequency band from 6.8 to 20GHz, which covers the X-Band/Ku-Band Communication with high efficiency. The impedance bandwidth of the radiator is 98.5%, with an electrical size of. 34λx.34λx0.034A in lambda. The suggested design includes a modified patch in the trident shape fed by a microstrip line. Rectangular elements have been designed for better resonances at lower modes. The antenna is simulated with an FR4 substrate using CST Simulator. The exact dimensions of the antenna are 15x15x1.5 cubic millimeter. Five stages evolution process is also investigated by simulations, and corresponding S-parameter results are presented. The proposed structure also demonstrates stable radiation patterns across the operating bandwidth. The proposed radiator has a high gain of 3.1 dBi, and an efficiency of 87%. Therefore, it is useful for X-band, and Ku-band, including Radar, Space, Terrestrial, and Satellite microwave communication.
UR - https://www.scopus.com/pages/publications/85149488610
UR - https://www.scopus.com/pages/publications/85149488610#tab=citedBy
U2 - 10.1109/MAPCON56011.2022.10047379
DO - 10.1109/MAPCON56011.2022.10047379
M3 - Conference contribution
AN - SCOPUS:85149488610
T3 - 2022 IEEE Microwaves, Antennas, and Propagation Conference, MAPCON 2022
SP - 1891
EP - 1894
BT - 2022 IEEE Microwaves, Antennas, and Propagation Conference, MAPCON 2022
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 2022 IEEE Microwaves, Antennas, and Propagation Conference, MAPCON 2022
Y2 - 12 December 2022 through 16 December 2022
ER -