4.4 Article

Design of slot array antenna in groove Gap waveguide technology

期刊

IET MICROWAVES ANTENNAS & PROPAGATION
卷 13, 期 8, 页码 1235-1239

出版社

INST ENGINEERING TECHNOLOGY-IET
DOI: 10.1049/iet-map.2018.5861

关键词

slot antenna arrays; antenna radiation patterns; optimisation; waveguide antennas; impedance matching; rectangular waveguides; radiowave propagation; groove gap waveguide technology; slot-array rectangular waveguide antenna; slot array groove gap waveguide antenna; propagation constant; analytic equations; impedance matching; side-lobe level; optimisation process; Chebyshev distribution; reflection coefficient; radiation pattern

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This paper presents a step-by-step procedure for the design of a slot array antenna in groove gap waveguide technology. The design procedure is based on defining an effective width for groove gap waveguides. To accomplish this, a direct equivalent correspondence is assumed between the groove gap waveguide and a rectangular waveguide. It is demonstrated that once the effective width of the groove gap waveguide is found, conventional equations for the design of slot-array rectangular waveguide antenna can be utilised to accurately design a slot array antenna in gap waveguide technology. Thus, unlike other methods available in literature, the proposed method only requires the knowledge of propagation constant in the dominant mode of the groove gap waveguide. Since analytic equations are utilised, the design of a slot array groove gap waveguide antenna with very good impedance matching and desired side-lobe level can be accomplished in a fast optimisation process. Using the proposed method, slot array antennas with uniform and Chebyshev distribution of slots are designed. Finally, a prototype of a designed antenna is fabricated and its reflection coefficient and radiation pattern are measured to provide an experimental verification.

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