Lorenzo Maule
Advanced control techniques for unmanned aerial vehicles.
Rel. Alessandro Rizzo, Kimon Valavanis. Politecnico di Torino, Corso di laurea magistrale in Mechatronic Engineering (Ingegneria Meccatronica), 2024
PDF (Tesi_di_laurea)
- Tesi
Accesso riservato a: Solo utenti staff fino al 30 Aprile 2026 (data di embargo). Licenza: Creative Commons Attribution Non-commercial No Derivatives. Download (18MB) |
Abstract: |
This thesis investigates the development and evaluation of a quadrotor controller based on Koopman theory, and compares its performance with a benchmark PID controller that includes feedback linearization in its inner loop. The main objective is to assess the effectiveness of the Koopman-based controller relative to the traditional PID approach through a series of simulations and physical tests. The evaluation encompasses three main stages: Model-in-the-Loop (MIL) simulations, Hardware-in-the-Loop (HIL) simulations, and physical trials on a custom-built quadrotor drone. Both controllers were tested on two distinct trajectories: hovering and circular paths. Specifically, the Koopman-based controller was tested with varying speeds during the circular trajectory tests to explore its operational limits. The results provide a comparative analysis of the controllers' performance and robustness in different conditions, contributing to the advancement of quadrotor control strategies. |
---|---|
Relatori: | Alessandro Rizzo, Kimon Valavanis |
Anno accademico: | 2024/25 |
Tipo di pubblicazione: | Elettronica |
Numero di pagine: | 177 |
Soggetti: | |
Corso di laurea: | Corso di laurea magistrale in Mechatronic Engineering (Ingegneria Meccatronica) |
Classe di laurea: | Nuovo ordinamento > Laurea magistrale > LM-25 - INGEGNERIA DELL'AUTOMAZIONE |
Ente in cotutela: | University of Denver (STATI UNITI D'AMERICA) |
Aziende collaboratrici: | University of Denver |
URI: | http://webthesis.biblio.polito.it/id/eprint/33241 |
Modifica (riservato agli operatori) |