teaching
Teaching portfolio with current and previous university courses.
This page summarizes my teaching activity across the University of Modena and Reggio Emilia, the University of Bologna, the University of Verona, and the University of Padua.
Current institutional teaching load: 21 ECTS (182 hours), plus 10 additional hours in teacher training programs for secondary schools.
2025
Signal Generation, Acquisition, Processing, and Distribution
Course responsibility (10 teaching hours) in teacher training programs for secondary schools.
Methods, Measurement Techniques, and Sensors
Course responsibility for 6 ECTS (48 hours) in the interuniversity BSc in Medical Systems Engineering for the Person.
Hardware and Software Co-Design
Module responsibility for 2 ECTS (16 hours) within a 12 ECTS MSc course.
Advanced Sensors for Electric Vehicles
Responsibility for the integrated course (6 ECTS) and coordinator of a 3 ECTS module (30 hours).
Industrial Measurements
Course responsibility for 9 ECTS (72 hours) in the MSc in Electronics Engineering.
Circuit Electronics Laboratory
Module responsibility for 1 ECTS (16 hours) in the BSc in Electronic Engineering.
2024
Connections and Networks, RS-232, LAN, Fundamentals of Field Buses
Course responsibility (10 teaching hours) in teacher training programs for secondary schools.
2023
Electronic Measurements and Laboratory
Module responsibility for 2 ECTS (30 hours) in the BSc in Electronic Engineering.
2020
Controllers and Industrial Communication Networks
Course responsibility for 6 ECTS in the BSc in Mechatronic Engineering.
2019
Foundations of Computer Science
Course responsibility for 9 ECTS in the BSc in Mechatronic Engineering.
2018
Embedded Systems Programming
Course responsibility for 9 ECTS in the MSc in Mechatronic Engineering.
Industrial Communication Networks
Course responsibility for 6 ECTS in BSc programs in Mechanical and Mechatronic Engineering.
Thesis Supervision
Supervisor
- 2025: Testing and validation of a new generation map-based Adaptive Cruise Control (A. Bellei), MSc in Electric Vehicle Engineering, University of Bologna.
- 2024: Integration of photovoltaic panel and battery for uninterrupted monitoring of subsurface vapor emissions (D. Parrella), BSc in Electronic Engineering, University of Modena and Reggio Emilia.
- 2024: Range and low-voltage accessory current testing of the E260 electric vehicle in various environmental conditions (Jingrui Luo), MSc in Electric Vehicle Engineering, University of Bologna.
- 2020: OPC UA protocol for interoperability in industrial systems (G. Cannavale), BSc in Mechatronic Engineering.
- 2018: OPC UA and TSN: analysis of an innovative solution for industrial communications (S. Vanti), BSc in Mechatronic Engineering, University of Padua.
- 2017: Performance analysis of an IEEE 802.11 wireless link for interconnection between two industrial real-time ethernet segments (E. Petri), BSc in Mechanical and Mechatronic Engineering, University of Padua.
- 2017: Programming industrial devices for performance measurement in Profibus DP real-time networks (R. Salviati), BSc in Mechanical and Mechatronic Engineering, University of Padua.
- 2017: Programming industrial devices for connection to Profibus DP real-time networks (M. Simioni), BSc in Mechanical and Mechatronic Engineering, University of Padua.
Co-Supervisor
- 2016: Analysis of Ethernet Powerlink network and development of a wireless extension based on IEEE 802.11n WLAN (A. Tagliapietra), MSc in Telecommunications Engineering, University of Padua.
- 2016: Energy consumption measurements for Ethernet boards compliant with the EEE standard (R. Mollaiyan), BSc in Electronic Engineering, University of Padua.
- 2015: Channel estimation for authentication via software defined radio (A. Cavicchio), BSc in Computer Engineering, University of Padua.
- 2015: Powerline communication for home automation systems (M. Dominese), BSc in Automation Engineering, University of Padua.
- 2014: Analysis of an IEEE 802.11-based protocol for real-time applications in agriculture (M. Luvisotto), MSc in Automation Engineering, University of Padua.
- 2014: Implementation of IEEE 802.11g standard on software defined radio systems (F. Casamento), BSc in Information Engineering, University of Padua.
- 2013: Traffic models for data networks and energy efficient control (M. Michielan), MSc in Automation Engineering, University of Padua.
- 2013: Energy-efficient ethernet networks for industrial applications, Part A: IEEE 802.3az standard (M. Conti), BSc in Information Engineering, University of Padua.
- 2013: Energy-efficient ethernet networks for industrial applications, Part B: laboratory measurements (M. Perazzolo), BSc in Information Engineering, University of Padua.
- 2013: Energy consumption optimization for real-time ethernet networks (A. Salata), MSc in Automation Engineering, University of Padua.
- 2013: Use of an FPGA-based device for real-time power quality measurements (I. Ergest), BSc in Electronic Engineering, University of Padua.
- 2012: Study and design of robust measurement methods for low-voltage synchrophasors (M. Penzo), MSc in Electronic Engineering, University of Padua.
- 2011: Cross-layer simulation of retransmission techniques in interfering IEEE 802.11 and IEEE 802.15.4 wireless networks (R. Bersan), BSc in Electronic Engineering, University of Padua.