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Automatics
Major: Automotive Engineering
Code of subject: 7.133.07.O.009
Credits: 3.50
Department: Department of machine design and avtomotive engineering
Lecturer: Банга В.І.
Semester: 2 семестр
Mode of study: денна
Завдання: ..
Learning outcomes: The learning outcomes of this discipline detail the following program learning outcomes:
1. Knowledge and understanding of the basics of technological, fundamental and engineering sciences, which are the basis of industrial mechanical engineering in the relevant field (RN2).
2. To know and understand industrial engineering processes, to have skills in their practical use (PhD3).
3. Carry out engineering calculations to solve complex problems and practical problems in industrial mechanical engineering (RN4).
4. Analyze engineering objects, processes and methods (RN5).
Required prior and related subjects: 1. Computer technologies in the automotive industry.
2. Theory and calculation of vehicle units and systems.
Summary of the subject: The principles of construction, characteristics, methods of calculation and design of automation devices and their functional elements, automated technological processes of industrial engineering, examples of implementation of automation of technological processes, theory of automated control, dynamic properties and characteristics of elementary links and automated control systems, principles of determining the stability of control systems are considered. determination of the quality of automated control systems.
Опис: ..
Assessment methods and criteria: Description of methods for assessing the level of achievement of learning outcomes: Assessment of students' knowledge in the discipline "Automatics" is carried out in accordance with the working curriculum in the form of examination control.
Критерії оцінювання результатів навчання: ..
Recommended books: 1. Baralo O.V. etc. Automation of technological processes and automatic control systems: a study guide. K.: Agrarian education, 2010.
2. Vorobyova O.M., Fleita Yu.V. Technical means of automation: education. manual Odesa: ONAZ named after O.S. Popova, 2018. 208 p.
3. Borodyn I.F., Nedylko N.M. Automation of technological processes. M.: Agropromizdat, 1986. 345 p.
4. Borodyn I.F., Kirilyn N.I. Fundamentals of automation and automation of production processes. M.: Kolos, 1977. 328 p.
5. Bobukh. A.O. Automated control systems for technological processes: Education. manual. - Kharkiv: KhNAMG, 2006. 185 p
6. Ivanov A. O. Theory of automatic control: Textbook. - Dnipropetrovsk: National Mining University. 2003. 250 p.
7. Kapustin N.M. Kuznetsov P.M. and others. Automation of production processes in mechanical engineering: Textbook. for clubs; Ed. N.M. Cabbage - M.: Higher. Shk., 2004. 415 p.
8. Klavdiev A.A. The theory of automatic control in examples and tasks / A.A. Klavdiev. - St. Petersburg: SZTU, 2005. 74 p.
9. Martynenko I.I. Automation and automation of production processes / I.I. Martynenko, B.L. Golovytskyi, R.D. Protsenko, T.F. Reznychenko. M.: Agropromizdat, 1985. – 335 p.
10. Malov A.N., Ivanov Yu.V. Basics of automation and automation of production processes. - M.: Mashinostroenie, 1974. 368 p.
11. Dmytriv V.T., Shimanskyi V.M. Electronics and microcircuit technology. - Lviv: Poster. 2004.
Auxiliary