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Course info
FES / AOTS
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Course description
Department/Unit / Abbreviation
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FES
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AOTS
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Academic Year
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2023/2024
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Academic Year
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2023/2024
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Title
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General Theory of Systems
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Form of course completion
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Examination
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Form of course completion
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Examination
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Accredited / Credits
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Yes,
15
Cred.
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Type of completion
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Combined
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Type of completion
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Combined
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Time requirements
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Lecture
12
[HRS/WEEK]
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Course credit prior to examination
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No
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Course credit prior to examination
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No
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Automatic acceptance of credit before examination
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No
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Included in study average
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NO
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Language of instruction
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English
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Occ/max
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Automatic acceptance of credit before examination
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No
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Summer semester
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0 / -
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0 / -
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0 / -
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Included in study average
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NO
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Winter semester
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0 / -
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0 / -
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0 / -
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Repeated registration
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NO
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Repeated registration
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NO
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Timetable
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Yes
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Semester taught
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Winter + Summer
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Semester taught
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Winter + Summer
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Minimum (B + C) students
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not determined
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Optional course |
Yes
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Optional course
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Yes
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Language of instruction
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English
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Internship duration
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0
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No. of hours of on-premise lessons |
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Evaluation scale |
S|N |
Periodicity |
každý rok
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Periodicita upřesnění |
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Fundamental theoretical course |
No
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Fundamental course |
No
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Fundamental theoretical course |
No
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Evaluation scale |
S|N |
Substituted course
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FES/DOTS
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Preclusive courses
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N/A
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Prerequisite courses
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N/A
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Informally recommended courses
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N/A
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Courses depending on this Course
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N/A
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Histogram of students' grades over the years:
Graphic PNG
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XLS
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Course objectives:
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The aim of the course is to meet students with basic knowledge of modern approaches towards analyses and syntheses of systems. Students will be introduced to fundamental features of statistic and dynamic systems, proposals of their mathematic models and optimization methods. Based on this course students will be able to deepen their scientific research as well as practical application by the use of PC tools.
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Requirements on student
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Work out project of this subject
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Content
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1. Introduction to the common system theory. Historical aspects. Basic notions and definitions. Classifications and characteristics of systems. 2. Static systems. Description of static systems. Attributes of static systems 3. Dynamic systems. Description of dynamic systems. Attributes of dynamic systems 4. Common attributes of systems. Attainability, observability, conrollability 5. Modeling of systems. Analytic models, experimental models. 6. Optimization of systems Linear programming, dynamic programming, non linear programming 7. Computer simulation of the systems. Simulink system
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Activities
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Fields of study
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Guarantors and lecturers
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Literature
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Recommended:
Štecha, J. Obecná teorie systémů.. Ediční středisko ČVUT, Praha, 1980.
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Recommended:
Mařík, V., Zdráhal, Z. Obecná teorie systémů. Řešené příklady.. ČVUT, Praha, 1980.
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Recommended:
Zítek, P. Simulace dynamických systémů.. Ediční středisko ČVUT, Praha, 1983.
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Recommended:
Beneš, J. Teorie systémů.. Academia, Praha., 1974.
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Recommended:
Štach, J. Základy teorie systémů.. SNTL, Praha, 1982.
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Prerequisites - other information about course preconditions |
- |
Competences acquired |
Students will be able use basic characteristics of static and dynamic systems, design of their mathematical models and use methods of their optimization, as well. |
Teaching methods |
-
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Assessment methods |
-
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