Faculty Of Engıneerıng
Electrıcal And Electronıcs Engıneerıng (Englısh)

Course Information

ELECTROMECHANICAL ENERGY CONVERSION
Code Semester Theoretical Practice National Credit ECTS Credit
Hour / Week
EEE306 Spring 3 2 4 4

Prerequisites and co-requisites
Language of instruction English
Type Required
Level of Course Bachelor's
Lecturer Assoc. Prof. Ahmet TEKE
Mode of Delivery Face to Face
Suggested Subject
Professional practise ( internship ) None
Objectives of the Course "Basics of AC electrical machines and definition of MMF waveforms. Understanding the structure and working principle of synchronous generator. Teaching of the structure and working principle of the synchronous motor. Understanding single and three-phase asynchronous motor structure and its working principle. "
Contents of the Course "Distributed windings, MMF waveforms, multi-phase windings and rotating field winding factor, harmonic voltages, synchronous machines, cylindrical and salient pole machine types, synchronous and asynchronous machines, Circle diagram, speed control for asynchronous motors, single and three-phase asynchronous motors. "

Learning Outcomes of Course

# Learning Outcomes
1 Analyses AC electrical machines and MMF waveforms
2 Analyses multi-phase windings and rotating field
3 Analyses winding factor, analyses about harmonic voltages
4 Analyses synchronous generator, perfoms open and short circuit test
5 Analyses synchronous motors and can perform its calculations
6 Analyses asynchronous machines, Analyses single-phase asynchronous motor
7 Analyses three-phase asynchronous motors, Analyses about speed control methods

Course Syllabus

# Subjects Teaching Methods and Technics
1 Fundamentals of AC electrical machines lecture
2 MMF waveforms in Distributed windings, multi-phase windings and rotating field lecture
3 Winding factor, harmonic voltages lecture
4 Fundamentals of synchronous machine lecture
5 Structure and working principle of synchronous generator lecture
6 Open and short circuit test of synchronous generator lecture
7 Midterm exam
8 Structure and working principle of synchronous motors lecture
9 Open and short circuit test of synchronous motors lecture
10 Introduction of asynchronous machines lecture
11 Asynchronous generator structure and operating principle of the basics lecture
12 Speed control methods of Induction motors lecture
13 Single-phase asynchronous motor structure, open and short circuit tests lecture
14 Methods of making asynchronous motors lecture
15
16 Final Exam

Course Syllabus

# Material / Resources Information About Resources Reference / Recommended Resources
1 Electric Machinery Fundamentals, S. J. Chapman,
2 Electrical machines and drives, J. Hindmarsh,
3 Electric machines and electromechanics, S. Nasar,
4 Electrical machines, J. Nagrath, Electrical machinery, A. E. Fitzgerald

Method of Assessment

# Weight Work Type Work Title
1 40% Mid-Term Exam Mid-Term Exam
2 60% Final Exam Final Exam

Relationship between Learning Outcomes of Course and Program Outcomes

# Learning Outcomes Program Outcomes Method of Assessment
1 Analyses AC electrical machines and MMF waveforms 1 1͵2
2 Analyses multi-phase windings and rotating field 1 1͵2
3 Analyses winding factor, analyses about harmonic voltages 1 1͵2
4 Analyses synchronous generator, perfoms open and short circuit test 1 1͵2
5 Analyses synchronous motors and can perform its calculations 1 1͵2
6 Analyses asynchronous machines, Analyses single-phase asynchronous motor 1 1͵2
7 Analyses three-phase asynchronous motors, Analyses about speed control methods 1 1͵2
PS. The numbers, which are shown in the column Method of Assessment, presents the methods shown in the previous table, titled as Method of Assessment.

Work Load Details

# Type of Work Quantity Time (Hour) Work Load
1 Course Duration 14 5 70
2 Course Duration Except Class (Preliminary Study, Enhancement) 14 2 28
3 Presentation and Seminar Preparation 0 0 0
4 Web Research, Library and Archival Work 0 0 0
5 Document/Information Listing 0 0 0
6 Workshop 0 0 0
7 Preparation for Midterm Exam 1 8 8
8 Midterm Exam 1 2 2
9 Quiz 0 0 0
10 Homework 0 0 0
11 Midterm Project 0 0 0
12 Midterm Exercise 0 0 0
13 Final Project 0 0 0
14 Final Exercise 0 0 0
15 Preparation for Final Exam 1 10 10
16 Final Exam 1 2 2
  120