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Fully-Metallic Additively Manufactured Monolithic Double-Ridged Waveguide Rotman Lens in the K/K(a)-Band

This paper reports on the design and experimental validation of a fully-metallic double-ridged waveguide 10 × 10 Rotman lens additively manufactured as a single part. The wide band operation of this quasi-optical beamformer enables us to cover the uplink and downlink frequencies allocated to satelli...

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Autores principales: Fonseca, Nelson J. G., Gomanne, Sophie-Abigaël, Rico-Fernández, José, Jankovic, Petar, Galdeano, Jaione, Toso, Giovanni, Angeletti, Piero, Arrebola, Manuel, Quevedo-Teruel, Oscar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10386171/
https://www.ncbi.nlm.nih.gov/pubmed/37514867
http://dx.doi.org/10.3390/s23146573
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author Fonseca, Nelson J. G.
Gomanne, Sophie-Abigaël
Rico-Fernández, José
Jankovic, Petar
Galdeano, Jaione
Toso, Giovanni
Angeletti, Piero
Arrebola, Manuel
Quevedo-Teruel, Oscar
author_facet Fonseca, Nelson J. G.
Gomanne, Sophie-Abigaël
Rico-Fernández, José
Jankovic, Petar
Galdeano, Jaione
Toso, Giovanni
Angeletti, Piero
Arrebola, Manuel
Quevedo-Teruel, Oscar
author_sort Fonseca, Nelson J. G.
collection PubMed
description This paper reports on the design and experimental validation of a fully-metallic double-ridged waveguide 10 × 10 Rotman lens additively manufactured as a single part. The wide band operation of this quasi-optical beamformer enables us to cover the uplink and downlink frequencies allocated to satellite communications in the K/K [Formula: see text]-band, from 17.3 GHz to 30 GHz. The feeding port design was adjusted to enable vertical printing, thus minimizing the use of supporting structures. A prototype was manufactured and tested. The reported results indicate losses in the range of 0.5 dB in the lower-frequency band and 0.8 dB in the upper-frequency band, including the waveguide transitions added for test purposes. The measured reflection and coupling coefficients remain below −11.5 dB over the operating band. The standard deviation of the residual phase error across the array ports is below [Formula: see text] in simulation and below [Formula: see text] in measurements. Array factors synthesized using the scattering parameters confirm the good stability of the beamforming functionality over the wide frequency band analyzed. This monolithic design is a promising step toward more integrated antenna systems, such as a compact dual-stack configuration for planar array design.
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spelling pubmed-103861712023-07-30 Fully-Metallic Additively Manufactured Monolithic Double-Ridged Waveguide Rotman Lens in the K/K(a)-Band Fonseca, Nelson J. G. Gomanne, Sophie-Abigaël Rico-Fernández, José Jankovic, Petar Galdeano, Jaione Toso, Giovanni Angeletti, Piero Arrebola, Manuel Quevedo-Teruel, Oscar Sensors (Basel) Article This paper reports on the design and experimental validation of a fully-metallic double-ridged waveguide 10 × 10 Rotman lens additively manufactured as a single part. The wide band operation of this quasi-optical beamformer enables us to cover the uplink and downlink frequencies allocated to satellite communications in the K/K [Formula: see text]-band, from 17.3 GHz to 30 GHz. The feeding port design was adjusted to enable vertical printing, thus minimizing the use of supporting structures. A prototype was manufactured and tested. The reported results indicate losses in the range of 0.5 dB in the lower-frequency band and 0.8 dB in the upper-frequency band, including the waveguide transitions added for test purposes. The measured reflection and coupling coefficients remain below −11.5 dB over the operating band. The standard deviation of the residual phase error across the array ports is below [Formula: see text] in simulation and below [Formula: see text] in measurements. Array factors synthesized using the scattering parameters confirm the good stability of the beamforming functionality over the wide frequency band analyzed. This monolithic design is a promising step toward more integrated antenna systems, such as a compact dual-stack configuration for planar array design. MDPI 2023-07-21 /pmc/articles/PMC10386171/ /pubmed/37514867 http://dx.doi.org/10.3390/s23146573 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Fonseca, Nelson J. G.
Gomanne, Sophie-Abigaël
Rico-Fernández, José
Jankovic, Petar
Galdeano, Jaione
Toso, Giovanni
Angeletti, Piero
Arrebola, Manuel
Quevedo-Teruel, Oscar
Fully-Metallic Additively Manufactured Monolithic Double-Ridged Waveguide Rotman Lens in the K/K(a)-Band
title Fully-Metallic Additively Manufactured Monolithic Double-Ridged Waveguide Rotman Lens in the K/K(a)-Band
title_full Fully-Metallic Additively Manufactured Monolithic Double-Ridged Waveguide Rotman Lens in the K/K(a)-Band
title_fullStr Fully-Metallic Additively Manufactured Monolithic Double-Ridged Waveguide Rotman Lens in the K/K(a)-Band
title_full_unstemmed Fully-Metallic Additively Manufactured Monolithic Double-Ridged Waveguide Rotman Lens in the K/K(a)-Band
title_short Fully-Metallic Additively Manufactured Monolithic Double-Ridged Waveguide Rotman Lens in the K/K(a)-Band
title_sort fully-metallic additively manufactured monolithic double-ridged waveguide rotman lens in the k/k(a)-band
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10386171/
https://www.ncbi.nlm.nih.gov/pubmed/37514867
http://dx.doi.org/10.3390/s23146573
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