Low-Sidelobe Flat Panel Array Fed by a 3D-Printed Half-Mode Gap Waveguide Amplitude-Tapering Network

Handle

https://riunet.upv.es/handle/10251/209293

Cita bibliográfica

Castellá-Montoro, A.; Ferrando-Rocher, M.; Herranz Herruzo, JI.; Valero-Nogueira, A. (2024). Low-Sidelobe Flat Panel Array Fed by a 3D-Printed Half-Mode Gap Waveguide Amplitude-Tapering Network. IEEE Access. 12:2607-2614. https://doi.org/10.1109/ACCESS.2023.3347222

Titulación

Resumen

[EN] This article presents the design and evaluation of an 8 x 8 Ka-band low-sidelobe slot array antenna using gap waveguide technology. The slot array is fed by a single-layer amplitude-tapering network implemented in half-mode groove gap waveguide, resulting in a low-profile, low-sidelobe antenna. The simplicity of the proposed feeding network, composed of a novel design of asymmetrical dividers, enables precise fabrication using cost-effective additive techniques. Experimental results demonstrate a significant reduction in sidelobe levels compared to traditional uniform arrays, with a radiation efficiency exceeding 84%. This design, featuring simple and robust asymmetrical splitters, is well-suited for applications requiring high gain and low interference.

Fuente

IEEE Access

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