The reconfigurable intelligent surface (RIS) is a promising device to enable and improve future radio communications, thanks to its potential to engineer radio channels. RIS allow control of the environment of propagation in radio networks through reconfigurable elements. Non-diagonal RIS (beyond diagonal, BD-RIS) have recently been proposed as new architectures in which each element is capable of transmitting a combination of the signals received from the other elements. In this work we will study the system model if the transmitter is equipped with many antennas and the receiver with only one. Subsequently we will introduce a general model to maximize the average power of the signal received through RIS optimization. Finally we will use a positive semi-definite programming (SDP) algorithm to optimize the RIS and maximize channel capacity.
La superficie intelligente riconfigurabile (RIS) è un dispositivo promettente per abilitare e migliorare future comunicazioni radio, grazie al suo potenziale di ingegnerizzare i canali radio. Le RIS consentono il controllo dell’ambiente di propagazione nelle reti radio attraverso elementi riconfigurabili. Recentemente, RIS non diagonali (beyond diagonal, BD-RIS) sono state proposte come nuove architetture nelle quali ciascun elemento è in grado di trasmettere una combinazione dei segnali ricevuti dagli altri elementi. In questo lavoro studieremo il modello del sistema nel caso il trasmettitore sia equipaggiato con molte antenne e il ricevitore con una sola. Successivamente introdurremo un modello generale per massimizzare la potenza media del segnale ricevuto attraverso l’ottimizzazione della RIS. Infine useremo un’algoritmo semi-definite positive (SDP) programming per ottimizzare la RIS, e massimizzare la capacità del canale.
OTTIMIZZAZIONE DI SUPERFICI INTELLIGENTI RICONFIGURABILI NON DIAGONALI
SCARIN CALLEGARO, MATTIA
2023/2024
Abstract
The reconfigurable intelligent surface (RIS) is a promising device to enable and improve future radio communications, thanks to its potential to engineer radio channels. RIS allow control of the environment of propagation in radio networks through reconfigurable elements. Non-diagonal RIS (beyond diagonal, BD-RIS) have recently been proposed as new architectures in which each element is capable of transmitting a combination of the signals received from the other elements. In this work we will study the system model if the transmitter is equipped with many antennas and the receiver with only one. Subsequently we will introduce a general model to maximize the average power of the signal received through RIS optimization. Finally we will use a positive semi-definite programming (SDP) algorithm to optimize the RIS and maximize channel capacity.File | Dimensione | Formato | |
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https://hdl.handle.net/20.500.12608/67666