Dual-polarized Plane Wave Generator based on Reflectarray for its Application to Portable CATR Systems
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Resumen:
In this work, a reflectarray antenna is introduced to act as a plane wave generator (PWG) to evaluate devices in mm-Wave frequencies. The reflectarray is designed to radiate a uniform plane wave close to the aperture to reduce the size of the system. The Intersection Approach is used to design the reflectarray carrying out two phase-only synthesis for the two linear polarizations. The synthesis significantly improves the results obtained by an analytical approach obtaining a dualpolarized PWG. The result of the synthesis is used to carry out a design. The unit cell is a double set of orthogonal coplanar dipoles printed on a single-dielectric layer. The designed reflectarray shows significantly good performance in terms of the uniform plane wave obtained. Finally, the reflectarray-based PWG is used for the first time to evaluate the radiation pattern of an antenna. This compact measuring system presents quite good results evaluating the radiation pattern.
In this work, a reflectarray antenna is introduced to act as a plane wave generator (PWG) to evaluate devices in mm-Wave frequencies. The reflectarray is designed to radiate a uniform plane wave close to the aperture to reduce the size of the system. The Intersection Approach is used to design the reflectarray carrying out two phase-only synthesis for the two linear polarizations. The synthesis significantly improves the results obtained by an analytical approach obtaining a dualpolarized PWG. The result of the synthesis is used to carry out a design. The unit cell is a double set of orthogonal coplanar dipoles printed on a single-dielectric layer. The designed reflectarray shows significantly good performance in terms of the uniform plane wave obtained. Finally, the reflectarray-based PWG is used for the first time to evaluate the radiation pattern of an antenna. This compact measuring system presents quite good results evaluating the radiation pattern.
Descripción:
Simposio Nacional de la Unión Científica Internacional de Radio (URSI) (37th. 2022. Malaga, Spain)
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This work was supported in part by Ministerio de Ciencia e Innovación and Agencia Española de Investigación within the project PID2020-114172RB-C21 / AEI / 10.13039 / 50110001033); and by the Gobierno del Principado de Asturias within the project AYUD/2021/51706.