In this article, the design of a passive reflectarray with beam-scanning capabilities over a wide scan range is addressed. The proposed approach is based on the use of an efficient evolutionary algorithm, Social Network Optimization, and on the definition of a proper optimization environment that allows the simultaneous optimization of the antenna radiation pattern for different pointing directions, keeping under control the computational cost of the procedure. The effectiveness of the method is validated through the experimental characterization of a prototype, whose performance is also compared with that of a conventional bifocal configuration.

SNO-Based Design of Wide-Angle Beam-Scanning Reflectarrays / Beccaria, Michele; Niccolai, Alessandro; Massaccesi, Andrea; Zich, R. E.; Pirinoli, Paola. - In: RADIO SCIENCE LETTERS. - ISSN 2736-2760. - ELETTRONICO. - 2:(2020), pp. 1-5. [10.46620/20-0047]

SNO-Based Design of Wide-Angle Beam-Scanning Reflectarrays

Michele Beccaria;Andrea Massaccesi;Paola Pirinoli
2020

Abstract

In this article, the design of a passive reflectarray with beam-scanning capabilities over a wide scan range is addressed. The proposed approach is based on the use of an efficient evolutionary algorithm, Social Network Optimization, and on the definition of a proper optimization environment that allows the simultaneous optimization of the antenna radiation pattern for different pointing directions, keeping under control the computational cost of the procedure. The effectiveness of the method is validated through the experimental characterization of a prototype, whose performance is also compared with that of a conventional bifocal configuration.
2020
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11583/2866692