545-0313 – Systems Theory and Control (TSŘ)

Gurantor departmentDepartment of Economics and Control Systems
Subject guarantordoc. Ing. Pavel Staša, Ph.D.
Study levelundergraduate or graduate
Subject version
Version codeYear of introductionYear of cancellationCredits
545-0313/01 1990/1991 2009/2010 4
545-0313/02 1990/1991 2009/2010 7
545-0313/03 2004/2005 2009/2010 5
545-0313/04 2004/2005 2009/2010 4
545-0313/05 2004/2005 2009/2010 8
545-0313/06 2005/2006 2014/2015 7
545-0313/07 2015/2016 2018/2019 8
545-0313/08 2026/2027 5

Subject aims expressed by acquired skills and competences

The aim of the course is to introduce students to the fundamental principles of systems theory and control and to develop systems thinking for the analysis of technical and organizational systems. Students will gain an overview of different types of systems, their properties and behaviour, and become familiar with basic methods of systems analysis and modelling. Upon successful completion of the course, students will be able to distinguish between different types of systems, describe their dynamic properties, and interpret the fundamental principles of control and regulation. Students will also gain an overview of modelling, optimization, and decision-making approaches in systems and become familiar with selected applications of systems theory in engineering and industrial practice.

Teaching methods

Lectures
Individual consultations
Tutorials
Project work

Summary

The course provides a basic overview of systems thinking, systems theory, and the principles of control. Students will become familiar with different types of systems, their properties and behaviour, and gain fundamental knowledge of systems analysis and modelling methods. Attention is given to system dynamics, principles of regulation and automatic control, fundamentals of optimization, and decision-making processes. The course also covers stochastic, distributed, and adaptive systems and their role in modern engineering applications. Students will gain an overview of the application of systems theory to the analysis and control of technical, transportation, energy, and other systems and become familiar with selected practical applications of the systems approach. Professional Knowledge Upon successful completion of the course, the student will be able to: - explain the fundamental principles of systems theory and control; - describe basic types of systems and their properties; - characterize methods of systems analysis and modelling; - explain the principles of regulation and automatic control; - describe the fundamentals of optimization, decision-making, and adaptive systems. Professional Skills Upon successful completion of the course, the student will be able to: - distinguish between different types of systems and their characteristics; - interpret simple system models; - analyse basic system properties and behaviour; - assess the role of regulatory and control mechanisms within a system; - apply basic systems-thinking approaches to engineering problems. General Competencies Upon successful completion of the course, the student will be able to: - apply systems thinking to problem solving; - search for and interpret professional information in the field of systems and control; - understand the relationships between system structure, behaviour, and control; - orient themselves in contemporary applications of systems theory and control.

Compulsory literature:

DENNIS, Alan; WIXOM, Barbara Haley a ROTH, Roberta M. Systems Analysis and Design, 8th Edition. Hoboken: Wiley, 2021. ISBN 978-1-119-80378-2. JANČÍKOVÁ, Zora. Systems theory. Vydání: první. Ostrava: Vysoká škola báňská - Technická univerzita Ostrava, 2015. ISBN 978-80-248-3715-4. LUHMANN, Niklas. Introduction to systems theory. Cambridge: Polity Press, c2013. ISBN 978-0-7456-4572-8. DAWSON, Joel L. A guide to feedback theory. Cambridge, United Kingdom: Cambridge University Press, 2021. ISBN 978-0-521-15393-5.

Recommended literature:

SKALICKÝ, Jiří. Control theory. Brno: Akademické nakladatelství CERM, 2005. ISBN 80-7204-421-4. FRANKLIN, Gene F.; POWELL, J. David a EMAMI-NAEINI, Abbas. Feedback control of dynamic systems. Eight edition. New York: Pearson, 2020. ISBN 978-1-292-27452-2. NISE, Norman S. Control systems engineering. Eighth edition. Hoboken, NJ: Wiley, [2019]. ISBN 978-1-119-59013-2. DORF, Richard C. a BISHOP, Robert H. Modern control systems. 12th ed. Upper Saddle River: Prentice Hall, c2011. ISBN 978-0-13-602458-3.

Additional study materials

Prerequisities

Subject has no prerequisities.

Co-requisities

Subject has no co-requisities.