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Automation and Optimization of Research Objects at Nuclear Power Stations (курсовий проект)

Major: Automation and Computer-Integrated Technologies
Code of Subject: 7.151.05.E.73
Credits: 3
Department: Automation and Computer-Integrated Technologies
Lecturer: Lesovoi Leonid Vasyliovych, Professor, Doctor of Technical Sciences
Semester: 2 семестр
Mode of Study: денна
Learning outcomes:
- knowledge of principles and methods of synthesis of control systems;
- knowledge of algorithms and control circuits, which are used at nuclear power plants;
- ability to make material and energy balances and apply them for static and dynamic simulation of the nuclear power objects;
- ability to make mathematical models and apply them to research of the nuclear power objects, automation tools and control systems;
- the ability to apply optimization techniques for the development of control systems of technology processes at nuclear power plants and their elements.
Required prior and related subjects:
- Control objects modeling;
- Identification and modeling of technological objects;
- Nuclear Power Plants and Systems;
- Automation and Optimization of Technological Processes at Nuclear Power Stations;
- Control Systems Modeling and Optimization.
Summary of the subject:
Research problem statement, characterization of nuclear power object in terms of construction of automated control system, analysis of the research object of nuclear power as control object, structural and parametric identification of nuclear power object, comparative analysis of existing automation schemes of investigated object, development of control system structure and selection of optimal criteria for achievement specified quality indicators of control system of nuclear power object; synthesis of optimal control system, software development and technical support of control system, modeling and research of control system and its elements, conclusions.
Recommended Books:
1. Demchenko V. Automation and modeling of technological processes of NPP and TPP. - Odesa: Astroprint Publishing House, 2001, 308 p. (in Russian).
2. Hashemian H.M. Maintenance of Process Instrumentation in Nuclear Power Plants. Springer-Verlag Berlin Heidelberg, 2006. – 304 p.
3. Reckleitis H., Reiwindron A., Regsdall K. Optimization in technics, books 1-2. Moscow: Mir Publishing House, 1986. (in Russian).
4. Quackernack H., Seevan R. Linear optimal control systems. Moscow: Mir Publishing House, 1977. (in Russian).
Assessment methods and criteria:
- final control (control measure – differentiated test): oral form (100%).