Course Name Code Semester T+U Hours Credit ECTS
Control Sytems I EBO 305 5 3 + 2 4 5
Precondition Courses
Recommended Optional Courses
Course Language Turkish
Course Level Bachelor's Degree
Course Type Compulsory
Course Coordinator Prof.Dr. AKADEMİK PERSONEL
Course Lecturers
Course Assistants Res.Asst. Sezgin KAÇAR
Course Category Other
Course Objective Giving students an understanding of the concepts used in controller systems, the methods used to test the systems, modeling the systems, obtaining the responses in the time domain and simulation of systems using software (Matlab).
Course Content Introduction to systems, the concept of feedback. The structures of open and closed loop controller systems and their properties. Transfer functions.
The methods for the reduction of block diagrams. Signal flow graphs. Masons rule. Obtaining transfer functions via Masons rule. State-space representations of linear systems. Derivation of phase variable block diagrams. Examples with Matlab applications.
Industry Support
Supporter Company
Supporter Instructor
# Course Learning Outcomes Teaching Methods Assessment Methods
1 Explain the concepts in controller systems. Self Study, Lecture, Question-Answer, Brain Storming,
2 Understanding of the formulas used to describe the systems. Lecture, Question-Answer, Discussion, Self Study, Educational Play,
3 Explain modelling of electrical and mechanical units and explaining their interactions. Lecture, Question-Answer, Self Study,
4 Derive models of electrical and mechanical systems. Self Study, Problem Solving, Sightseeing, Lecture, Question-Answer, Discussion,
5 Evaluate time domain responses of first second order systems. Lecture, Question-Answer, Discussion, Self Study, Problem Solving, Educational Play,
6 Apply simulations of systems using software (Matlab). Lecture, Question-Answer, Discussion, Self Study, Educational Play,
Week Course Topics Preliminary Preparation
1 Definition of the system, and feedback systems.
2 Features and structures of open-loop and closed-loop systems and their transfer functions. Applications of example systems.
3 Block diagrams for electrical circuits (RLC and Op-amp).
4 Block diagram reduction methods and example applications.
5 Block diagram reduction using MATLAB.
6 Signal-flow graphs, Masons rule. Transfer function via Masons rule.
7 Time domain investigations of the response of first and second order systems.
8 Definition of model and its types. Relationships between signal, sub-signal and parameters. Static and dynamic elements.
9 Some relationships between each model of electrical and mechanical elements. Transfer functions of electric network, translational and rotational mechanical systems.
10 Midterm exam.
11 Transfer functions for systems with gears. Effective resistance.
12 Similarities between electrical and mechanical systems. Modelling of electromechanical systems. Example problems and solutions.
13 State-space representations of linear systems. Phase variable block diagrams.
14 Creating transfer functions and phase variable block diagrams in a software package (simulink toolboxes in Matlab) for simulating the systems and obtain a simulation response for an example of input signal.
Resources
Course Notes
Course Resources
Order Program Outcomes Level of Contribution
1 2 3 4 5
1 To have latest knowledge and skills intended for research and practice in computer technology X
2 To utilize equipments and instruments used in computer technology X
3 To develop curriculum related to computer technology and have a skill to transfer those accumulation by oral and written way X
4 To have knowledge and skills for planning, designing and managing procedures independently or in cooperation X
5 To have an open mind to ethic auditing and positive criticism, and have a constructive and interpreting attitude against scientific and social problems X
6 To disseminate and realize the environmental awareness X
7 To cooperate with social organizations and the society X
8 To contribute to the education of people who work under his/her responsibility and to manage some activities for their vocational careers and social rights X
9 To appropriate self learning and life- long learning principles X
10 To congregate in national or international scale to see individual applications on the premises and to perform some activities and mobility for professional advancement in computer technology X
# Contribution of Course Learning Outcomes to Program Outcomes PÇ 1 PÇ 2 PÇ 3 PÇ 4 PÇ 5 PÇ 6 PÇ 7 PÇ 8 PÇ 9 PÇ 10
1 Explain the concepts in controller systems.
2 Understanding of the formulas used to describe the systems.
3 Explain modelling of electrical and mechanical units and explaining their interactions.
4 Derive models of electrical and mechanical systems.
5 Evaluate time domain responses of first second order systems.
6 Apply simulations of systems using software (Matlab).
Evaluation System
Semester Studies Contribution Rate
1. Ara Sınav 60
1. Performans Görevi (Laboratuvar) 13
2. Performans Görevi (Laboratuvar) 13
3. Performans Görevi (Laboratuvar) 14
Total 100
1. Yıl İçinin Başarıya 50
1. Final 50
Total 100
ECTS - Workload Activity Quantity Time (Hours) Total Workload (Hours)
Course Duration (Including the exam week: 16x Total course hours) 16 3 48
Hours for off-the-classroom study (Pre-study, practice) 16 3 48
Mid-terms 1 10 10
Performance Task (Laboratory) 3 4 12
Final examination 1 15 15
Total Workload 133
Total Workload / 25 (Hours) 5.32
dersAKTSKredisi 5