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Metamaterial-Based Reconfigurable Intelligent Surface: 3D Meta-Atoms Controlled by Graphene Structures

[PDF] 676892.pdf (1.301Mo)
Identificadores
URI: https://hdl.handle.net/10481/98239
DOI: 10.1109/MCOM.001.2001161
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Auteur
Molero Jiménez, Carlos; Palomares Caballero, Ángel; Alex Amor, Antonio; Parellada Serrano, Ignacio; Gámiz Pérez, Francisco Jesús; Padilla De La Torre, Pablo; Valenzuela Valdes, Juan Francisco
Editorial
Institute of Electrical and Electronics Engineers (IEEE)
Materia
3-D printing
 
Reconfigurable Intelligent Surface (RIS)
 
Graphene
 
Beamforming
 
Date
2021-07-05
Referencia bibliográfica
C. Molero et al., "Metamaterial-Based Reconfigurable Intelligent Surface: 3D Meta-Atoms Controlled by Graphene Structures," in IEEE Communications Magazine, vol. 59, no. 6, pp. 42-48, June 2021, doi: 10.1109/MCOM.001.2001161
Patrocinador
Departamento de Teoría de la Señal, Telemática y Comunicaciones / Grupo SWAT TIC-244; Spanish Program of Research, Development and Innovation under Project TIN2016-75097-P, Project RTI2018-102002-A-I00, and Project EQC2018-004988-P. Junta de Andalucía under Project B-TIC-402-UGR18 and Project P18.RT.4830. Predoctoral grant FPU18/01965.
Résumé
The upcoming high-speed wireless communication systems will be hosted by millimeter- and sub-millimeter-wave frequency bands. At these frequencies, electromagnetic waves suffer from severe propagation losses and non-line-of-sight scenarios. A new wireless communication paradigm has arrived to resolve this situation through the use of reconfigurable intelligent surfaces (RISs). These metadevices are designed to reconfigure the wireless environment in a smart way. Traditional RIS designs based on the implementation of 2D configurations have been considered up to now. However, 3D structures enable an extra degree of freedom in the design that can be taken as an advantage for the development of improved RIS structures with advanced functionalities. This article proposes the implementation of a novel electronically reconfigurable RIS based on the use of 3D graphene meta-atoms. The reconfigurability lies in the graphene conductivity, easily tunable with a biasing voltage. Different conductivity values vary the meta-atom electromagnetic response, modifying the RIS functionality. A multi-objective optimization framework determines the optimal phase state of each meta-atom to accomplish the desired RIS performance. The operation of the RIS as an efficient beam steerer/ splitter, absorber, and polarization selector is validated with full-wave results
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