The largest part of electric energy produced is not utilised in the form in which it is produced, transmitted and distributed: it is converted depending on the user's needs, in order to get maximum performance. Power electronics groups knowledge related to static energy conversion in applications for industry, renewable energy, transport and home consumer, and particularly for torque and speed regulation of electrical drives in such applications.
Knowledge of principles of electric energy static conversion, of power converters and related command and modulation methods, of main electric drives, with particular regard to applications for mobility and transport. Ability of making simple quantitative analysis and of managing mathematical models of converters, motors and loads for calculation and simulation.
Provide the students with the ability of harmonising what acquired within their studies of mathematics, physics, electrotechnics and electrical machinery, integrating with operation of power static converters in relation to power supply to users (particularly electrical machines), in order to achieve basic modelling, analysis and design in different applications.
At the end of the course the student will have to demonstrate to:
It is necessary to have fundamental knowledge of electrotechnics and electrical machines.Basic knowledge of electronics is useful. Students should know about Fourier series expansion for a periodical signal.
The teaching method is oriented to integrate theoretical aspects with numarical calculations in the classroom and with modelling and computer simulation. During the theoretical lectures examples of numerical calculations are insertedn and then proposed for computer simulation. Moreover, interactive "question time" are included.
"Students with valid certifications for Specific Learning Disorders (SLDs), disabilities or other educational needs are invited to contact the teacher and the School's contact person for disability at the beginning of teaching to agree on possible teaching arrangements that, while respecting the teaching objectives, take into account individual learning patterns. Contacts of the teacher and the School's disability contact person can be found at the following link Comitato di Ateneo per l’inclusione delle studentesse e degli studenti con disabilità o con DSA | UniGe | Università di Genova"
Lecture notes from the teacher
Ricevimento: Any time by appointment (3472335477, 0103352181, paolo.pozzobon@unige.it)
https://corsi.unige.it/corsi/8716/studenti-orario
POWER ELECTRONICS FOR ENERGY AND MOBILITY
Written exam (solution of problems as seen in the classroom)
Oral exam (as above, and verification of theoretical aspects)
Written and oral exams are divided into two parts, according to the structure of the lectures:
Written and oral related to the same part have to be completed in the same session of exams. Exams related to the two parts have to be completed in the order above.
Students who have valid certification of physical or learning disabilities on file with the University and who wish to discuss possible accommodations or other circumstances regarding lectures, coursework and exams, should speak both with the instructor and with Professor Federico Scarpa (federico.scarpa@unige.it ), the School's disability liaison.
The exams will be related to the topics treated in the classroom and will evaluate the level of knowledge reached by the students and their capability of performing simple quantitative estimations on systems with power static converters and electrical machines. The students will have to demonstrate that they have acquired the ability of describing the associated electromechanical processes clearly, adopting correct terminology and notations.
For any further information contact the teacher:
Paolo Pozzobon
3472335477
paolo.pozzobon@unige.it