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Terminated in academic year 2021/2022

Automation of Technological Processes

Type of study Bachelor
Language of instruction Czech
Code 638-2017/01
Abbreviation ATP
Course title Automation of Technological Processes
Credits 10
Coordinating department Department of Automation and Computing in Industry
Course coordinator doc. Ing. Jiří David, Ph.D.

Subject syllabus

1. Fundamental terms and determination content subject. Definition sizable systems on controlled objects.
2. Work, function and structure ASŘ. Algorithmic structure, notion technological and systemic algorithm. Classification automated control system.
3. Theoretic problems ASŘ, setting of objectives plus effectiveness reflector control. Problem mathematical description controlled systems, mathematical models and their usage.
4. Method synthesis control algorithm. Types algorithms at generation automated control system at metallurgy.
5. Problem obtaining, transmission and data conversion.
6. Input consideration to solution automatization metallurgical production.
7. Control system coking plant and preparations charge to the blast furnace.
8. Automatization sections blast furnace operation.
9. Control system aggregates for steel making- SM furnace, pillion furnace, convertors, electric furnace.
10. Problems control secondary metallurgy.
11. Automatization plants continuous casting steels.
12. Informative and control system on rolling - mills.
13. Furnace control for heating and heat treatment steel.
14. Automatization traffic and energy system metallurgical operation.
15. Industrial robots as a element automatization,robots technological complexs in metallurgy.

E-learning

Integrovaný systém modulární počítačové podpory výuky ekonomicko-technického zaměření (http://lms.vsb.cz) - Vzdělávací modul 1 – Počítačové systémy řízení metalurgických procesů.
- fyzický model ohřívačů větru,
- fyzický model kyslíkového konvertoru,
- fyzický model ohřívací pece,
- fyzický model válcovací stolice.
VROŽINA, M., DAVID, J., GARZINOVÁ R. Automatizace technologických procesů. Studijní opory. Ostrava: VŠB – Technická univerzita Ostrava, 2015.
VROŽINA, M., DAVID, J., GARZINOVÁ R. Automation of Technological Procesess. Studijní opory. Ostrava: VŠB – Technická univerzita Ostrava, 2015.

Literature

DOYLE, J. C., B. A. FRANCIS and A. R. Tannenbaum. Feedback Control Theory. New York: Macmillan Publishing Co., 2008. ISBN: 978-0486469331 .
DISTEFANO III, J.,‎ A. R. STUBBERUD and I. J. WILLIAMS. Schaum’s Outline of Feedback and Control Systems. New York: McGraw-Hill Education, 2013. ISBN: 978-0071829489 .
NISE, N. S. Control Systems Engineering. New Jersey: Wiley; 2015. ISBN: 978-1118170519 .
DORF, R. F. and‎ R. H. BISHOP. Modern Control Systems. London:Pearson; 2010. ISBN: 978-0136024583 .

Advised literature

FRANKLIN, G.F.,‎ J. D. POWELL and A. EMAMI-NAEINI. Feedback Control of Dynamic Systems. London: Pearson, 2014. ISBN: 978-0133496598 .
SEBORG, D. E., T. F. EDGAR and‎ D. A. MELLICHAMP a‎ F. J. DOYLE. Process Dynamics and Control. New Jersey: Wiley, 2016. ISBN: 978-1119385561 .
ǺSTRÖM, K. and T. HÄGGLUND. PID Controllers: Theory, Design and Tuning. Second Edition. Research Triangle Park - North Carolina, Instrument Society of America 1995. ISBN: 1-55617-516-7.