Course: Computer Support in El. Engineering

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Course title Computer Support in El. Engineering
Course code KEP/PPEL
Organizational form of instruction Lecture + Tutorial
Level of course Bachelor
Year of study not specified
Semester Winter and summer
Number of ECTS credits 6
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)
  • Vítek Martin, Ing.
  • Slobodník Karel, Ing. Ph.D.
  • Zigler Martin, Ing.
  • Kropík Petr, Ing. Ph.D.
  • Štekl Pavel, Ing. Ph.D.
  • Šroubová Lenka, Ing. Ph.D.
  • Mayer Jan, Ing.
  • Koudela Lukáš, Ing. Ph.D.
  • Juřík Martin, Bc.
  • Kuthan Jiří, Ing.
  • Juřík Martin, Ing.
  • Matoušek Radek, Ing.
  • Kuthan Jiří, Ing.
Course content
Computing systems in technical practice. Introduction to computational systems such as Octave, MATLAB, etc. and their Toolboxes. Introduction to algorithmization. Basic computational operations and procedures, operators, application help, the core group of library functions. Creating Custom Functions and scripts. Working with matrices and vectors, array operators, predefined constants and variables. Mathematical functions. Functions for working with matrices. Operations on matrices. Introduction to save variables to file. Plots creating. Solving of systems of linear algebraic equations. Working with complex numbers. Basics of working with polynomials. Polynomial regression. Flow control calculation, control statements. Functions for text input and output. Visualization of the results of calculations. Input and output into / from file. Formatted printing to a string and its applications. Differential equations and their systems. Differential equations of higher orders. LTspice - the basics of the system for modeling and simulation of electrical circuits.

Learning activities and teaching methods
Lecture supplemented with a discussion, Multimedia supported teaching, Laboratory work, Skills demonstration, Individual study
  • Practical training (number of hours) - 26 hours per semester
  • Contact hours - 39 hours per semester
  • Individual project (40) - 26 hours per semester
  • Preparation for comprehensive test (10-40) - 20 hours per semester
  • Preparation for an examination (30-60) - 30 hours per semester
  • Preparation for formative assessments (2-20) - 15 hours per semester
prerequisite
Knowledge
to have basic knowledges in mathematics for grammar schools
to have basic knowledges in physics for grammar schools
Skills
to control commonly available information and communication technique
to have basic skills in mathematics for grammar schools
to have basic skills in physics for grammar schools
Competences
N/A
N/A
N/A
learning outcomes
Knowledge
to know computing systems like Octave, MATLAB (and similar)
Skills
to apply the possibilities of mathematic systems like Octave, MATLAB (and similar) to solve problems in technical practice
to solve the basic calculation of the matrix calculus and differential equatins
to visualize the results of the computations, to process measurement results, to generate plots
to solve problems in the field of simulation of electrical circuits
to apply the basic functions of LTSpice for solving problems in the field of simulation of electrical circuits
Competences
N/A
N/A
teaching methods
Knowledge
Lecture supplemented with a discussion
Multimedia supported teaching
Self-study of literature
Skills
Practicum
Skills demonstration
Laboratory work
Multimedia supported teaching
Competences
Lecture supplemented with a discussion
Practicum
Self-study of literature
Skills demonstration
assessment methods
Knowledge
Combined exam
Test
Project
Skills
Combined exam
Skills demonstration during practicum
Continuous assessment
Self-evaluation
Competences
Combined exam
Test
Project
Recommended literature
  • Hanselman, Duane; Littlefield, Bruce. Mastering MATLAB 6 : a comprehensive tutorial and reference. Upper Saddle River : Prentice Hall, 2001. ISBN 0-13-019468-9.
  • Karban, Pavel. Výpočty a simulace v programech Matlab a Simulink. Brno : Computer Press, 2006. ISBN 80-251-1448-3.
  • Wimmer, Miloš. Internet a jeho služby. 1. vyd. Plzeň : ZČU, 1996. ISBN 80-7082-276-7.
  • Zaplatílek, Karel; Doňar, Bohuslav. MATLAB : tvorba uživatelských aplikací. Praha : BEN - technická literatura, 2004. ISBN 80-7300-133-0.
  • Zaplatílek, Karel; Doňar, Bohuslav. MATLAB : začínáme se signály. 1. vyd. Praha : BEN - technická literatura, 2006. ISBN 80-7300-200-0.
  • Zaplatílek, Karel; Doňar, Bohuslav. MATLAB pro začátečníky. 2. vyd. Praha : BEN - technická literatura, 2005. ISBN 80-7300-175-6.


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 1 Recommended year of study:1, Recommended semester: Winter