PRINCIPLES AND APPLICATIONS OF ELECTRICAL ENGINEERING
cod. 1004638

Academic year 2021/22
2° year of course - First semester
Professor
- Andrea TOSCANI
Academic discipline
Convertitori, macchine e azionamenti elettrici (ING-IND/32)
Field
Attività formative affini o integrative
Type of training activity
Related/supplementary
48 hours
of face-to-face activities
6 credits
hub:
course unit
in ITALIAN

Learning objectives

Provide technical and regulatory basis in the field of production,
management and use of electricity, in order to make the management
engineer able to appropriately interact with internal company, customers
and suppliers.

Prerequisites

Mathematics. Physics

Course unit content

Two-pole systems in D.C.: resistors, voltage and current sources, power
analysis. Electrical circuit analysis in D.C.: Millman's theorem, node and
mesh methods, effect superposition, Thevenin's and Norton's theorems.
Capacitors and inductors. Lumped parameter circuits. Power analysis of
capacitors and inductors. Transient circuit analysis. Time domain solution.
AC circuit analysis: the Steinmetz transform. AC power analysis. Power
factor correction. Resonance. Three phase systems. Delta and wye
connections.

Full programme

Two-pole systems in D.C.: resistors, voltage and current sources, power
analysis.Electrical circuit analysis in D.C.: Millman's theorem, node and
mesh methods, effect superposition, Thevenin's and Norton's theorems.
Altre informazioni
Modalità di verifica
dell'apprendimento
Prova scritta.
Programma esteso Bipoli elettrici in corrente continua: bipolo R, generatori indipendenti di
tensione e di corrente, comportamento energetico. Analisi dei circuiti
elettrici in corrente continua: teorema di Millman, equazioni indipendenti,
metodi delle equazioni alle maglie e ai nodi, sovrapposizione degli effetti,
teoremi di Thevenin e Norton. Condensatori e capacità parassite. Bipolo
C. Induttori e induttanze parassite. Bipolo L. Circuiti a parametri
concentrati. Comportamento energetico dei bipoli C ed L. Analisi dei
circuiti in regime transitorio. Soluzione nel dominio del tempo. Circuiti in
condizioni di regime sinusoidale: metodo simbolico (trasformata di
Steinmetz). Potenza in regime sinusoidale. Rifasamento. Risonanza e
antirisonanza. Sistemi trifase. Collegamenti a stella e a triangolo.
Capacitors and inductors.Lumped parameter circuits. Power analysis of
capacitors and inductors.Transient circuit analysis. Time domain solution.
AC circuit analysis: the Steinmetz transform.AC power analysis. Power
factor correction. Resonance. Three phase systems. Delta and wye
connections.

Bibliography

G. Fabricatore, "Elettrotecnica e applicazioni", Liguori editore.

Teaching methods

The course is based on classroom (or via Teams) lectures. The resolution of the
exercises is done by analytical methods.

Assessment methods and criteria

Written test.

Other information

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