20810381-2 - Industrial and electrical applications

Acquisition of basic theoretical knowledge of electrical circuits in direct and alternating current. Knowledge of Kirchhoff's laws and methods for analysing circuits in transient regime. Ability to analyse and solve DC and AC electrical circuits, both through analytical calculation and through the use of circuit simulation software. Ability to analyse simple electrical circuits underlying acquisition systems for biomedical applications.

THE LESSONS WILL GIVE FUNDAMENTALS AND METHODOLOGIES ON ELECTRICAL APPLICATIONS WITH REFERENCE, IN PARTICULAR, TO ELECTRICAL MACHINES AND POWER PLANTS DEVOTED TO GENERATION, TRANSPORTATION, DISTRIBUTION AND UTILIZATION OF THE ELECTRIC ENERGY. THE STUDENTS WILL FACE SIMPLE DESIGN PROBLEMS AND NUMERICAL EXERCISES.

Curriculum

teacher profile | teaching materials

Programme

Theory of three-phase circuits and systems. Main properties of three-phase networks.
Symmetrical, balanced and unbalanced. Algebra of sequences. Fortesque theorem.
Circuit model of the power transformer, ta and tv. Physical principles of Electrodynamic energy conversion: rotating magnetic field.
Basic principles on the operation of the main rotating electrical machines.
Description of the electrical system of energy production, transport and distribution of electrical energy. Fundamentals of at, mt and bt electrical power systems.
From the magnitudes of the field to the primary constants of power lines. Telegraphers equation and Model of three-phase line through transmission and/or two-port parameters at t or
Pi-greek in symmetrical sinusoidal regime. Numerical methods for calculating power flows. Neutral status in at mt and bt three-phase networks. Fault analysis.
Models Equivalent circuits for alculating short-circuit currents in at and bt.
Overcurrent and overvoltage protection. Principles of operation of circuit breakers and fuses. Coordination of protections.
Power factor correction and filtering of harmonics in electrical systems. Fundamentals of design of bt electrical systems.

Core Documentation

Lecturer's handouts and lecture slides
G. Conte, Impianti Elettrici – Ed. Hoepli
F. Iliceto, Impianti Elettrici – Ed. Patron
F.Iliceto, Lezioni di Elettrotecnica, Vol.II “Elementi ed applicazioni delle macchine elettriche – Ed. Patron

Reference Bibliography

G. Conte, Impianti Elettrici – Ed. Hoepli F. Iliceto, Impianti Elettrici – Ed. Patron F.Iliceto, Lezioni di Elettrotecnica, Vol.II “Elementi ed applicazioni delle macchine elettriche – Ed. Patron

Type of delivery of the course

Classes in attendance

Attendance

Classes in attendance

Type of evaluation

Oral Examination. The test includes questions on the topics explained in the lectures and discussion of the exercises assigned during the course.

teacher profile | teaching materials

Programme

Theory of three-phase circuits and systems. Main properties of three-phase networks.
Symmetrical, balanced and unbalanced. Algebra of sequences. Fortesque theorem.
Circuit model of the power transformer, ta and tv. Physical principles of Electrodynamic energy conversion: rotating magnetic field.
Basic principles on the operation of the main rotating electrical machines.
Description of the electrical system of energy production, transport and distribution of electrical energy. Fundamentals of at, mt and bt electrical power systems.
From the magnitudes of the field to the primary constants of power lines. Telegraphers equation and Model of three-phase line through transmission and/or two-port parameters at t or
Pi-greek in symmetrical sinusoidal regime. Numerical methods for calculating power flows. Neutral status in at mt and bt three-phase networks. Fault analysis.
Models Equivalent circuits for alculating short-circuit currents in at and bt.
Overcurrent and overvoltage protection. Principles of operation of circuit breakers and fuses. Coordination of protections.
Power factor correction and filtering of harmonics in electrical systems. Fundamentals of design of bt electrical systems.

Core Documentation

Lecturer's handouts and lecture slides
G. Conte, Impianti Elettrici – Ed. Hoepli
F. Iliceto, Impianti Elettrici – Ed. Patron
F.Iliceto, Lezioni di Elettrotecnica, Vol.II “Elementi ed applicazioni delle macchine elettriche – Ed. Patron

Reference Bibliography

G. Conte, Impianti Elettrici – Ed. Hoepli F. Iliceto, Impianti Elettrici – Ed. Patron F.Iliceto, Lezioni di Elettrotecnica, Vol.II “Elementi ed applicazioni delle macchine elettriche – Ed. Patron

Type of delivery of the course

Classes in attendance

Attendance

Classes in attendance

Type of evaluation

Oral Examination. The test includes questions on the topics explained in the lectures and discussion of the exercises assigned during the course.

teacher profile | teaching materials

Programme

Theory of three-phase circuits and systems. Main properties of three-phase networks.
Symmetrical, balanced and unbalanced. Algebra of sequences. Fortesque theorem.
Circuit model of the power transformer, ta and tv. Physical principles of Electrodynamic energy conversion: rotating magnetic field.
Basic principles on the operation of the main rotating electrical machines.
Description of the electrical system of energy production, transport and distribution of electrical energy. Fundamentals of at, mt and bt electrical power systems.
From the magnitudes of the field to the primary constants of power lines. Telegraphers equation and Model of three-phase line through transmission and/or two-port parameters at t or
Pi-greek in symmetrical sinusoidal regime. Numerical methods for calculating power flows. Neutral status in at mt and bt three-phase networks. Fault analysis.
Models Equivalent circuits for alculating short-circuit currents in at and bt.
Overcurrent and overvoltage protection. Principles of operation of circuit breakers and fuses. Coordination of protections.
Power factor correction and filtering of harmonics in electrical systems. Fundamentals of design of bt electrical systems.

Core Documentation

Lecturer's handouts and lecture slides
G. Conte, Impianti Elettrici – Ed. Hoepli
F. Iliceto, Impianti Elettrici – Ed. Patron
F.Iliceto, Lezioni di Elettrotecnica, Vol.II “Elementi ed applicazioni delle macchine elettriche – Ed. Patron

Reference Bibliography

G. Conte, Impianti Elettrici – Ed. Hoepli F. Iliceto, Impianti Elettrici – Ed. Patron F.Iliceto, Lezioni di Elettrotecnica, Vol.II “Elementi ed applicazioni delle macchine elettriche – Ed. Patron

Type of delivery of the course

Classes in attendance

Attendance

Classes in attendance

Type of evaluation

Oral Examination. The test includes questions on the topics explained in the lectures and discussion of the exercises assigned during the course.

teacher profile | teaching materials

Programme

Theory of three-phase circuits and systems. Main properties of three-phase networks.
Symmetrical, balanced and unbalanced. Algebra of sequences. Fortesque theorem.
Circuit model of the power transformer, ta and tv. Physical principles of Electrodynamic energy conversion: rotating magnetic field.
Basic principles on the operation of the main rotating electrical machines.
Description of the electrical system of energy production, transport and distribution of electrical energy. Fundamentals of at, mt and bt electrical power systems.
From the magnitudes of the field to the primary constants of power lines. Telegraphers equation and Model of three-phase line through transmission and/or two-port parameters at t or
Pi-greek in symmetrical sinusoidal regime. Numerical methods for calculating power flows. Neutral status in at mt and bt three-phase networks. Fault analysis.
Models Equivalent circuits for alculating short-circuit currents in at and bt.
Overcurrent and overvoltage protection. Principles of operation of circuit breakers and fuses. Coordination of protections.
Power factor correction and filtering of harmonics in electrical systems. Fundamentals of design of bt electrical systems.

Core Documentation

Lecturer's handouts and lecture slides
G. Conte, Impianti Elettrici – Ed. Hoepli
F. Iliceto, Impianti Elettrici – Ed. Patron
F.Iliceto, Lezioni di Elettrotecnica, Vol.II “Elementi ed applicazioni delle macchine elettriche – Ed. Patron

Reference Bibliography

G. Conte, Impianti Elettrici – Ed. Hoepli F. Iliceto, Impianti Elettrici – Ed. Patron F.Iliceto, Lezioni di Elettrotecnica, Vol.II “Elementi ed applicazioni delle macchine elettriche – Ed. Patron

Type of delivery of the course

Classes in attendance

Attendance

Classes in attendance

Type of evaluation

Oral Examination. The test includes questions on the topics explained in the lectures and discussion of the exercises assigned during the course.