We describe the possibility of achieving enhanced radiation performance introducing multiple sources within a two-dimensional structure supporting one or more cylindrical leaky-waves. The device is planar and made by a grounded dielectric slab loaded on top by a periodic arrangement of metallic strips or patches and it is fed by an array of simple, fully integrated, dipoles. The antenna design is based on an accurate dispersive analysis of the involved leaky modes, considering solutions characterized by a fundamental fast harmonic, which can be realized using sub-wavelength partially reflecting surfaces. A design constituted by a multilayer slab of low-loss commercial laminates is proposed, and the original and attractive radiation features of the 2-D leaky-wave antennas excited by means of a circular arrangement of vertical electric or magnetic dipoles, which can effectively model several cases of practical interest, are investigated. On this basis, we demonstrate the possibility of generating either highly directional pencil beams steerable in both the azimuth and elevation far-field planes as well as the capability of controlling the polarization state of the beam.

Multi-fed 2-D leaky-wave antennas. Beam steering and polarization reconfigurability / Comite, D.; Gomez-Guillamon Buendia, V.; Burghignoli, P.; Baccarelli, P.; Podilchak, S. K.; Galli, A.. - 2019:(2019), pp. 2938-2946. (Intervento presentato al convegno 2019 PhotonIcs and Electromagnetics Research Symposium - Spring, PIERS-Spring 2019 tenutosi a Rome; Italy) [10.1109/PIERS-Spring46901.2019.9017490].

Multi-fed 2-D leaky-wave antennas. Beam steering and polarization reconfigurability

Comite D.;Burghignoli P.;Galli A.
2019

Abstract

We describe the possibility of achieving enhanced radiation performance introducing multiple sources within a two-dimensional structure supporting one or more cylindrical leaky-waves. The device is planar and made by a grounded dielectric slab loaded on top by a periodic arrangement of metallic strips or patches and it is fed by an array of simple, fully integrated, dipoles. The antenna design is based on an accurate dispersive analysis of the involved leaky modes, considering solutions characterized by a fundamental fast harmonic, which can be realized using sub-wavelength partially reflecting surfaces. A design constituted by a multilayer slab of low-loss commercial laminates is proposed, and the original and attractive radiation features of the 2-D leaky-wave antennas excited by means of a circular arrangement of vertical electric or magnetic dipoles, which can effectively model several cases of practical interest, are investigated. On this basis, we demonstrate the possibility of generating either highly directional pencil beams steerable in both the azimuth and elevation far-field planes as well as the capability of controlling the polarization state of the beam.
2019
2019 PhotonIcs and Electromagnetics Research Symposium - Spring, PIERS-Spring 2019
antenna feeds; antenna radiation patterns; beam steering; dipole antenna arrays; directive antennas; laminates; leaky wave antennas; planar antenna arrays
04 Pubblicazione in atti di convegno::04b Atto di convegno in volume
Multi-fed 2-D leaky-wave antennas. Beam steering and polarization reconfigurability / Comite, D.; Gomez-Guillamon Buendia, V.; Burghignoli, P.; Baccarelli, P.; Podilchak, S. K.; Galli, A.. - 2019:(2019), pp. 2938-2946. (Intervento presentato al convegno 2019 PhotonIcs and Electromagnetics Research Symposium - Spring, PIERS-Spring 2019 tenutosi a Rome; Italy) [10.1109/PIERS-Spring46901.2019.9017490].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1443372
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