Compact Circularly Polarized Antenna based on Gapwaveguide for SATCOM Applications
Paper in proceeding, 2024

In this study, a compact circular polarized antenna element based on gap waveguide has been introduced. The element is based on the compact quad ridge concept which allows a significant reduction in size for our proposed design compared to other conventional waveguide-based CP antenna designs. This compactness not only facilitates the design of more simplified individual components but also sets the way for the development of more compact arrays for the purpose of larger scanning angles in scanning array antennas. The dimensions of the antenna element is 6.58 × 6.58mm at a center frequency of 28.5GHz. The impedance bandwidth ranges from 27.75GHz to 29.75GHz and the axial ratio is less than 3dB, aligning with the impedance matching with a bandwidth of 5.08%. The design has low loss and high efficiency due to its fully metal structure. Given its inherent attributes and performance metrics, this compact cavity emerges as a promising choice for Satellite Communication (SATCOM) applications.

gap waveguide

circular polarization

Satellite Communication

quad ridge waveguide

compact antennas

Author

Raha Roosefid

Chalmers, Electrical Engineering, Communication, Antennas and Optical Networks

Jian Yang

Chalmers, Electrical Engineering, Communication, Antennas and Optical Networks

Ashraf Uz Zaman

Chalmers, Electrical Engineering, Communication, Antennas and Optical Networks

18th European Conference on Antennas and Propagation, EuCAP 2024


9788831299091 (ISBN)

18th European Conference on Antennas and Propagation, EuCAP 2024
Glasgow, United Kingdom,

Low-cost, high efficiency, wideband circular polarized planar array antenna for LEO SATCOM application (LHPALEO)

VINNOVA (2021-01351), 2021-07-01 -- 2023-06-30.

Subject Categories

Aerospace Engineering

Signal Processing

Other Electrical Engineering, Electronic Engineering, Information Engineering

DOI

10.23919/EuCAP60739.2024.10501326

More information

Latest update

9/20/2024