Nevşehir Hacı Bektaş Veli University Course Catalogue

Information Of Programmes

INSTITUTE OF SCIENCE / EEM-533 - ELECTRICAL AND ELECTRONICS ENGINEERING (MASTER)

Code: EEM-533 Course Title: VECTOR CONTROL IN ALTERNATIVE CURRENT DRIVERS Theoretical+Practice: 3+0 ECTS: 6
Year/Semester of Study 1 / Fall Semester
Level of Course 2nd Cycle Degree Programme
Type of Course Optional
Department ELECTRICAL AND ELECTRONICS ENGINEERING (MASTER)
Pre-requisities and Co-requisites None
Mode of Delivery Face to Face
Teaching Period 14 Weeks
Name of Lecturer AYDIN BOYAR (aydinboyar@nevsehir.edu.tr)
Name of Lecturer(s)
Language of Instruction Turkish
Work Placement(s) None
Objectives of the Course
To understand the importance of vector control in AA Drives, to obtain dynamic equations of AA motors, to remove the equations of continuous regime working, to obtain machine equations in the rotating roof.

Learning Outcomes PO MME
The students who succeeded in this course:
LO-1 PO-1 Sufficient knowledge in mathematics, science and engineering related to their branches; the ability to apply theoretical and practical knowledge in these areas to model and solve engineering problems.
PO-2 The ability to identify, formulate, and solve complex engineering problems; selecting and applying appropriate analysis and modeling methods for this purpose.
Examination
LO-2 PO-2 The ability to identify, formulate, and solve complex engineering problems; selecting and applying appropriate analysis and modeling methods for this purpose.
PO-3 The ability to design a complex system, process, device or product under realistic constraints and conditions to meet specific requirements; the ability to apply modern design methods for this purpose. (Realistic constraints and conditions include such issues as economy, environmental issues, sustainability, manufacturability, ethics, health, safety, social and political issues, according to the nature of design.)
Examination
PO: Programme Outcomes
MME:Method of measurement & Evaluation

Course Contents
Vector Control, PI Design
Weekly Course Content
Week Subject Learning Activities and Teaching Methods
1 Vector Control Lecture, question and answer
2 Vector Control Lecture, question and answer
3 Dynamic Equations of AC Motors Lecture, question and answer
4 Dynamic Equations of AC Motors Lecture, question and answer
5 Dynamic Equations of AC Motors Lecture, question and answer
6 Continuous Regime Study of Dynamic Equations Lecture, question and answer
7 Continuous Regime Study of Dynamic Equations Lecture, question and answer
8 mid-term exam
9 Dynamic Equations for Vector Control Lecture, question and answer
10 Dynamic Equations for Vector Control Lecture, question and answer
11 Dynamic Equations for Vector Control Lecture, question and answer
12 Application of Vector Control Lecture, question and answer
13 Application of Vector Control Lecture, question and answer
14 PI Controller Design Lecture, question and answer
15 PI Controller Design Lecture, question and answer
16 final exam
Recommend Course Book / Supplementary Book/Reading
1 N. MOHAN, T. M. UNDELAND and W. P. ROBBINS, Çeviri: Nejat TUNCAY, Metin GÖKAŞAN, Seta BOĞOSYAN, Literatür Yayınları, 1. Basım, Eylül 2003.
2 Modern Power Electronics and AC Drives, Bimal K. BOSE, Prentice Hall PTR, 2001. Güç Elektroniği, Doç. Dr. Osman GÜRDAL, Nobel Yayın Dağıtım, 2. Baskı, 2000.
3 Power Electronic Control of AC Motors, J. M. D. MURPHY and F. G. TURNBULL, Pergamon Pres, 1988.
Required Course instruments and materials
Course book, laptop computer, projector

Assessment Methods
Type of Assessment Week Hours Weight(%)
mid-term exam 8 1 40
Other assessment methods
1.Oral Examination
2.Quiz
3.Laboratory exam
4.Presentation
5.Report
6.Workshop
7.Performance Project
8.Term Paper
9.Project
final exam 16 1 60

Student Work Load
Type of Work Weekly Hours Number of Weeks Work Load
Weekly Course Hours (Theoretical+Practice) 3 14 42
Outside Class
       a) Reading 3 18 54
       b) Search in internet/Library 3 18 54
       c) Performance Project 0
       d) Prepare a workshop/Presentation/Report 0
       e) Term paper/Project 0
Oral Examination 0
Quiz 0
Laboratory exam 0
Own study for mid-term exam 1 14 14
mid-term exam 1 1 1
Own study for final exam 1 14 14
final exam 1 1 1
0
0
Total work load; 180