Smart Wireless Technologies Singular Lab (SWT-Lab)
The Smart and Wireless Applications and Technologies Group is made up of professors and research students (PhD and MSc) from the University of Granada.
The research activities in SWAT are mainly focused on 5G networks, including:
- Design and manufacture of RF devices at microwave and mmWave frequencies.
- Antennas for microwave purposes.
- Directive antennas for mmWave ranges.
- Propagation channel characterization and measurements.
- Antenna characterization and measurements: planar, cylindrical, spherical, and main cuts, from 10GHz to 180GHz.
3MT - Andrés Biedma Pérez - Diseño de dispositivos radiantes para comunicaciones mmWave
3MT - Juan Elías Galeote Cazorla - Medida y modelado del canal de comunicaciones para redes 6G
Mejor TFG ETSIIT UGR 2025: Desarrollo de sistemas espaciotemporales basados en antenas a gigahercios
Mejor TFM ETSIIT UGR 2025: Estudio de Canales #6G en Banda Sub-THz 🚀 | Juan Elías Galeote
3MT - Marcos Baena Molina - Contribución al diseño de RIS para comunicaciones 5G/6G
Enhancing Innovation: An Upgraded Reconfigurable Intelligent Surface (RIS)
🌐 Smart Wireless Technologies Laboratory 🌐
Jornadas Wireless Communications and Technologies for 5G/6G Networks
III Jornadas de la Unidad de Excelencia de Tecnologías Avanzadas de Telecomunicaciones
Seminar October 30th 2024 - Advances in Photonics, Radar and Telecommunications Systems
Jornadas Interspace 2024
3MT: Sistemas de imaging de RF usando OAM mediante metasuperficies reconfigurables.
SWAT Panel Discussions - Channel Characterization Perspectives for 6G
Reconfigurable Intelligence Surface (RIS) de 1-Bit
EuCAP '21 "Reconfigurable Phase Shifter in WG Technology Based on Glide-Symmetric Holey Structures"
ISAP '21 "Analysis of Glide-Symmetric FSS Structures from a Circuit Model Standpoint" - Antonio Álex
EuCAP 2021 "Time-Gating Technique to Emulate New Scenarios" - Alejandro Ramírez
Configuración de sistema RFoF a 20 GHz
Conexión y calibración de conversores de frecuencia de 110 a 170 GHz
Antennas: Radiation Properties and Measurement
Inkjet printing technique applied to the design of radiofrequency devices
RIS based on graphene layers