Alberto Priuli

Ph.D. Student

Ph.D. Advisor: Jun.-Prof. Gianluca Rizzello

Address:
c/o ZeMA - Zentrum für Mechatronik und Automatisierungstechnik gGmbH
Eschberger Weg 46, Gewerbepark Gebäude 9
66121 Saarbrücken
Germany

Mail: alberto.priuli(at)uni-saarland.de 

Telephone: -

 

Education

  • 2022 - Master’s Degree in Mechatronics Engineering, University of Trento, Trento, Italy
  • 2019 - Bachelor’s Degree in Industrial Engineering, University of Trento, Trento, Italy

Research

Research Project

  • DECMAS Phase 2 - Dielectric Elastomer Membranes for Cooperative Micro- Actuator/Sensor Concepts (DFG SPP 2206 KOMMMA),
    subproject Modeling and Cooperative Control

Research Interests

  • Nonlinear control
  • Dielectric Elastomers

Teaching

Teaching Assistant

  • Physics I, Industrial Engineering Course, University of Trento - Support and Exercises
  • Summer Semester 2024 - Support to the tutorials of ASIM 2

Scientific Publications

Peer-Reviewed Journal Papers

  1. A. Priuli,S. Tarbouriech, and L. Zaccarian, “Static Linear Anti-Windup Design With Sign-Indefinite Quadratic Forms”, IEEE Control Systems Letters, vol. 6, pp. 3158-3163, Jun. 2022 (DOI: 10.1109/LCSYS.2022.3182286).

International Conference Proceedings

  1.  S. Addario, A. Priuli, J. Hubertus, G. Schultes, S Seelecke, and G. Rizzello, “Design and Simulation of Negative-stiffness Thermoplastic Biasing Mechanisms for Dielectric Elastomer Actuator," in International Conference and Exhibition on New Actuator Systems and Applications ACTUATOR 24, 2024, pp. 233-236.
  2. A. Priuli, S. Addario, S. Croce, J. Hubertus, G. Schultes, and G. Rizzello, “Finite element modeling and numerical investigation of the effects of miniaturization on the performance of dielectric elastomer actuators," in Electroactive Polymer Actuators and Devices (EAPAD) XXVI, 2024, p. 129450N (DOI: 10.1117/12.3010405).
  3. S. Addario, A. Priuli, J. Hubertus, S. Gratz-Kelly, J. Neu, G. Schultes, S. Seelecke, and G. Rizzello, “Thermoplastic Polymer Based Negative Stiffness Biasing Mechanism for High Stroke Dielectric Elastomer Actuator Systems," in Electroactive Polymer Actuators and Devices (EAPAD) XXVI, 2024, p. 129450B (DOI: 10.1117/12.3010883).