Abstract
This paper presents a design of a 4 × 4 circularly polarized (CP) patch antenna array based on gap waveguide (GW) sequential feeding network. The proposed antenna single element consists of an aperture coupled circular patch antenna. A two-level sequential feeding network, that is used to enhance the polarization bandwidth, is designed, and investigated. The GW technology is employed to decrease the feeding network loss; and consequently, to achieve a low-loss antenna array. The antenna input port is a standard waveguide (WR-28), and it is coupled to the GW-based feed network using an appropriate transition. The proposed array is printed on RT5880 substrate, (with a relative permittivity of 2.2). The measured and simulated results show that both input S_11 and axial ratio bandwidths are greater than 30% over the frequency range of 25.8-35 GHz. The maximum gain is 18 dBic. The proposed work is considered a great choice for millimeter-wave applications.
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CITATION STYLE
Alazemi, A. J., Farahbakhsh, A., & Zarifi, D. (2023). A Wideband Gap Waveguide-Fed 16-Element Circularly Polarized Patch Antenna Array. IEEE Access, 11, 94937–94944. https://doi.org/10.1109/ACCESS.2023.3310407
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