Course: Modeling and Simulation

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Course title Modeling and Simulation
Course code KEF/MOSIX
Organizational form of instruction Lecture + Seminar
Level of course Bachelor
Year of study not specified
Semester Winter
Number of ECTS credits 3
Language of instruction Czech
Status of course Compulsory-optional, Optional
Form of instruction Face-to-face
Work placements This is not an internship
Recommended optional programme components None
Lecturer(s)
  • Smrčka David, Mgr. Ph.D.
Course content
1. Introduction - concepts (identification, simulation) 2. Experiment (planning, individuality, versatility, verification, experimental errors) 3. System (inputs , outputs, state, state variables, feedback) 4. Mathematically model (derivation, integration, delay) 5. Modeling of systems (abstract simulation model) 6. Basic concepts of systems theory (element, characterization, classification, continuity, confidentiality) 7. Digital computer (numerical integration, Euler's method, the accuracy of numerical solutions) 8. Modeling of random events (methods of generating random variables, characteristics) 9. Basic concepts and techniques for modeling and simulation of digital systems ( Diagnosis of logic circuits, modeling faults). 10.Example of a computer neural network model of the "back-propagation" (back-propagation)

Learning activities and teaching methods
Lecture
Learning outcomes
The course topics are focused on the methods and tools of modeling and simulation of real and designed continuous and digital systems together with practical examples.
The course focuses on understanding the modeling and simulation of physical problems. To explain the nature and interpret data, to distinguish and classify a given problem, to predict the behavior of the phenomena.
Prerequisites
unspecified

Assessment methods and criteria
Student performance

Recommended literature
  • Burian, Z., Krejčiřík, A. (2001). Simuluj. BEN Praha.
  • Cellier, F., Kofman, E. (2006). Continuous System Simulation. Springer.
  • Luděk Bartoněk. (2011). MODELOVÁNÍ A SIMULACE (analogové počítače) pro obor Aplikovaná fyzika.
  • Rábová,Z., Češka, M. (1982). Modelování a simulace. VUT Brno, SNTL.
  • Ross, S. (2002). Simulation. Academic Press.
  • Zeigler, B., Praehofer, H., Kim, T. (2000). Theory of Modeling and Simulation, second edition. Academic Press.


Study plans that include the course
Faculty Study plan (Version) Category of Branch/Specialization Recommended year of study Recommended semester
Faculty: Faculty of Science Study plan (Version): Applied Physics (2019) Category: Physics courses - Recommended year of study:-, Recommended semester: Winter
Faculty: Faculty of Science Study plan (Version): Instrument and Computer Physics (2019) Category: Physics courses - Recommended year of study:-, Recommended semester: Winter
Faculty: Faculty of Science Study plan (Version): Biophysics - Specialization in Molecular Biophysics (2024) Category: Physics courses 2 Recommended year of study:2, Recommended semester: Winter