Course: Theory of Electrical Engineering 2

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Course title Theory of Electrical Engineering 2
Course code KEP/YTE2
Organizational form of instruction Lecture + Tutorial
Level of course Bachelor
Year of study not specified
Semester Winter
Number of ECTS credits 4
Language of instruction Czech, English
Status of course Compulsory
Form of instruction Face-to-face
Work placements This is not an internship
Recommended optional programme components None
Lecturer(s)
  • Sodomka Ondřej, Ing.
  • Pánek David, Doc. Ing. Ph.D.
  • Mach František, Doc. Ing. Ph.D.
  • Kotlan Václav, Doc. Ing. Ph.D.
  • Benešová Zdeňka, Prof. Ing. CSc.
  • Ledvinová Marcela, Ing. Ph.D.
  • Karban Pavel, Prof. Ing. Ph.D.
  • Koudela Lukáš, Ing. Ph.D.
  • Hamar Roman, Ing. Ph.D.
  • Šroubová Lenka, Ing. Ph.D.
  • Polcar Petr, Ing. Ph.D.
  • Nazarčík Tomáš, Ing.
  • Petrášová Iveta, Ing. Ph.D.
  • Pospíšil Karel, Ing.
  • Kaska Jan, Ing.
Course content
Electrical circuits: Transient phenomena in the second and higher order circuits, formulation of a set of state equations, transient phenomena in circuits induced by time dependetn variables, use of Laplace's transformation to solve transient processes. Introduction to the theory of nonlinear circuits, characteristics of non-linear elements, static and dynamic parameters. Methods for analysis of nonlinear circuits. Phenomena on homogeneous transmission line. Theory of Electromagnetics fields Electrostatic field - calculation of distribution of local variables for simple symmetrical problems, potential, capacity. Current field - Joule's losses, calculation of resistance. Magnetic stationary field - calculation of distribution of local variables for simple symmetrical problems, inductance. Magnetic circuits.

Learning activities and teaching methods
Laboratory work, Lecture, Practicum
  • Contact hours - 52 hours per semester
  • Preparation for formative assessments (2-20) - 6 hours per semester
  • Preparation for laboratory testing; outcome analysis (1-8) - 6 hours per semester
  • Undergraduate study programme term essay (20-40) - 14 hours per semester
  • Preparation for an examination (30-60) - 30 hours per semester
prerequisite
Knowledge
to explain and know to use the methods of the analysis of circuits with non-harmonic signals
to explain the physics of the circuit dynamical behaviour
to know the methods of the transient phenomena analysis
to explain methods of analysis of steady state circuits
Skills
to solve a system of linear equations
to solve the systems of differential equations
to use Laplace's transformation to solve differential equations
to know the fundamentals of differential and integral calculus
to solve simple nonlinear algebraic equations
Competences
N/A
N/A
N/A
N/A
learning outcomes
Knowledge
to explain methods for dealing with transient phenomena of higher order
to explain methods for solution of nonlinear circuit analysis
to describe the basic properties of the stationary electromagnetic field
to describe the physical nature of electromagnetic phenomena
to explain the method of direct integration of Maxwell equations
Skills
to perform a computer simulation of solutions of transient phenomena of higher order
to analyze symmetric fields and magnetic circuits
to formulate equations for resolving transient phenomena of higher order
to formulate equations describing nonlinear circuits
Competences
N/A
N/A
teaching methods
Knowledge
Lecture supplemented with a discussion
Practicum
Self-study of literature
Skills
Practicum
Laboratory work
Competences
Lecture supplemented with a discussion
Practicum
Laboratory work
assessment methods
Knowledge
Combined exam
Test
Seminar work
Individual presentation at a seminar
Skills
Combined exam
Seminar work
Individual presentation at a seminar
Test
Competences
Test
Combined exam
Recommended literature
  • Přednášky z předmětu.
  • Benešová, Zdeňka; Ledvinová, Marcela. Základy elektrických obvodů v příkladech. 1. vyd. V Plzni : Západočeská univerzita, 2008. ISBN 978-80-7043-640-0.
  • Benešová, Zdeňka; Mayer, Daniel. Základní příklady z teorie elektromagnetického pole. Plzeň : Západočeská univerzita, 2008. ISBN 978-80-7043-737-7.
  • Mayer, Daniel. Teorie elektromagnetického pole. Plzeň : Západočeská univerzita, 2004. ISBN 80-7082-826-9.
  • Mayer, Daniel. Úvod do teorie elektrických obvodů. Praha : SNTL, 1981.


Study plans that include the course
Faculty Study plan (Version) Category of Branch/Specialization Recommended year of study Recommended semester
Faculty: Faculty of Electrical Engineering Study plan (Version): Commercial Electrical Engineering (16) Category: Electrical engineering, telecommunication and IT 2 Recommended year of study:2, Recommended semester: Winter