Electrical and Electronics Engineering
The purpose of the Department of Electrical and Electronics Engineering is to provide professional training. and at the same time to participate actively in applied and theoretical research. It is therefore necessary for students to acquire a sound knowledge of basic sciences. such as mathematics. physics and chemistry together with an understanding of economics. social sciences and humanities before specialization takes place. The program is designed to encourage the development of individual initiative and resourcefulness with emphasis on responsibility and good judgment.<BR><BR>The undergraduate program is designed for students who may wish to delay their decisions until the end of the fifth semester as to which of the several fields of Electrical and Electronics Engineering they will choose. The students may specialize in the fields of circuits and systems. electronics (VLSI. solid-state electronics. optoelectronics and MEMS). biomedical engineering. EMT. communications. signal processing. control systems. robotics. computer engineering. electrical machines and power electronics. power systems and high voltage. The selection of the fields of specialization in the fourth year must be made under the close supervision of the Department advisors or of the Chair of the Department. Successful candidates are awarded the degree of Bachelor of Science (B.S.) in Electrical and Electronics Engineering at the end of the fourth year. During this period of undergraduate study students are expected to spend a minimum of 40 working days in industry over two consecutive summers.<BR><BR>Research. on the other hand. is the life blood of an institution of higher education. Some of the major research activities are: Power system analysis and planning. power system control and operation. insulation. breakdown in dielectrics. H.V. measurement techniques. gaseous discharges. design of electrical machines. control of electrical machines. electrical drives. power converters. renewable energy sources. process control and instrumentation. intelligent control. adaptive control. vision. kinematics and trajectory planning of robots. artificial intelligence. pattern recognition. VLSI design. solid-state electronics. optoelectronics. MEMS. signal processing. data transmission. synchronization and equalization. coding techniques. speech processing. switching circuits. microcomputers (software and hardware). computer aided instruction. scattering and diffraction problems. antennas and radar. active and passive microwave devices and systems. biomedical instrumentation. medical imaging. acoustic imaging. pulse shaping filters. broad band matching. These activities forming a mutually beneficial link between the university and industry serve not only as a stimulus for a more intensive research environment in the Department but constitute a channel of information about the present and future needs of the industry to help in the improvement of the educational programs.<BR><BR>MISSION: Electrical and Electronics Engineering Department was founded with a threefold mission in teaching. research. and public service. Based on that foundation.<BR><BR>The
The published curriculum
Term by term, as printed in the catalogue. Elective slots are not listed as named courses because the catalogue does not name them.
First semester
Year 1- CENG240Programming with Python for Engineers3 credits · 4.0 ECTS
- CHEM107General Chemistry4 credits · 6.0 ECTS
- ENG101English for Academic Purposes I4 credits · 6.0 ECTS
- IS100Introduction to Information Technologies and ApplicationsNon credit · 1.0 ECTS
- MATH129Single Variable Calculus5 credits · 7.0 ECTS
- OHS101Occupational Health and Safety-INon credit · 2.0 ECTS
- PHYS105General Physics I4 credits · 7.0 ECTS
Second semester
Year 1- BA100Career PlanningNon credit · 2.0 ECTS
- EE101Introduction to Electrical and Electronics Engineering2 credits · 3.0 ECTS
- ENG102English for Academic Purposes II4 credits · 6.0 ECTS
- MATH130Multivariable and Vector Calculus5 credits · 7.5 ECTS
- MATH260Basic Linear Algebra3 credits · 5.0 ECTS
- ME105Computer Aided Engineering Graphics3 credits · 5.0 ECTS
- PHYS106General Physics II4 credits · 7.0 ECTS
Third semester
Year 2- EE201Circuit Theory I4 credits · 6.0 ECTS
- EE213Electrical Circuits Laboratory2 credits · 3.0 ECTS
- ENG211Academic Speaking Skills3 credits · 4.0 ECTS
- HIST2205History of the Turkish Revolution INon credit · 2.0 ECTS
- MATH219Introduction to Differential Equations4 credits · 7.0 ECTS
- OHS301Occupational Health and Safety - IINon credit · 2.0 ECTS
- PHYS213General Physics III3 credits · 5.0 ECTS
Fourth semester
Year 2- EE202Circuit Theory II4 credits · 6.0 ECTS
- EE212Semiconductor Devices& Modeling3 credits · 5.0 ECTS
- EE214Electronic Circuits Laboratory2 credits · 3.0 ECTS
- EE224Electromagnetic Theory4 credits · 6.0 ECTS
- EE230Probability and Random Variables3 credits · 5.0 ECTS
- HIST2206History of the Turkish Revolution IINon credit · 2.0 ECTS
Fifth semester
Year 3- EE300Summer Practice INon credit · 5.0 ECTS
- EE301Signals and Systems I3 credits · 5.0 ECTS
- EE303Electromagnetic Waves3 credits · 5.0 ECTS
- EE311Analog Electronics3 credits · 5.0 ECTS
- EE313Analog Electronics Laboratory2 credits · 3.0 ECTS
- EE361Electromechanical Energy Conversion I4 credits · 7.0 ECTS
- TURK105Turkish INon credit · 5.0 ECTS
- TURK201Elementary Turkish INon credit · 3.0 ECTS
- TURK303Turkish INon credit · 2.0 ECTS
Sixth semester
Year 3Seventh semester
Year 4Eighth semester
Year 4Other courses this department offers
- EE100Introduction to Electrical Engineering
- EE209Fundamentals of Electrical&electro. En
- EE281Electrical Circuits
- EE282Introduction to Digital Electronics
- EE304Introduction to Nonlinear Control Systems
- EE306Introduction to Random Processes
- EE312Digital Electronics
- EE321Fundamentals of Engineering Electromagnetics
- EE322Applied Electromagnetics for Communications and Sensing
- EE362Electromechanical Energy Conversion II
- EE374Fundamentals of Power Systems and Electrical Equipment
- EE381Systems and Control
- EE402Discrete Time Systems
- EE404Nonlinear Control Systems
- EE406Laboratory of Feedback Control Systems
- EE407Process Control
- EE412Nonlinear Electronics for Communica.
- EE413Introduction to VLSI Design
- EE414Introduction to Analog Integrated Circuits
- EE415Introduction to Medical Imaging
- EE416Biomedical Signals, Instrumentation and Measurement
- EE419Solid State Devices
- EE426Antennas and Propagation
- EE427Microwaves I
- EE428Microwaves II
- EE430Digital Signal Processing
- EE433Real-Time Applications of Digital Signal Processing
- EE435Communications I
- EE436Communications II
- EE438Optical Communication Systems
- EE441Data Structures
- EE442Operating Systems
- EE443Numerical Methods and Introduction to Optimization
- EE444Introduction to Computer Networks
- EE445Computer Architecture I
- EE446Computer Architecture II
- EE447Introduction to Microprocessors
- EE449Computational Intelligence
- EE462Utilization of Electrical Energy
- EE463Static Power Conversion I
- EE464Static Power Conversion II
- EE471Power System Analysis I
- EE472Power System Analysis II
- EE474Distribution Systems and Smart Grid
- EE475High Voltage Techniques I
- EE476High Voltage Techniques II
- EE478Power System Protection
- EE495Fundamentals of Photonics
- EE498Special Topics : Control System Design and Simulation
- EE499Special Topics : Vector Space Methods in Signal Processing
- EE500M.s. Thesis
- EE501Linear Systems Theory I
- EE502Linear Systems Theory II
- EE503Statistical Signal Processing and Modeling
- EE504Adaptive Signal Processing
- EE509High Frequency Filter Design
- EE510Analog Integrated Circuits
- EE512Intro. to Optical Fiber Communications
- EE514Infrared Devices and Systems
- EE515Bioelectricity and Biomagnetism
- EE516Biomems and Biosensors
- EE517Therapeutic&prosthetic Dev. in Biomed.en
- EE518Physiological Control Systems Analysis
- EE519Medical Imaging
- EE521Analytical Methods for Electromagnetics
- EE522Numerical Methods for Electromagnetics
- EE523Electromagnetic Wave Theory
- EE524Electromagnetic Wave Propagation
- EE525Antenna Engineering
- EE526Antenna Theory
- EE527Microwave Engineering
- EE528Microwave Theory
- EE5290Microwave Circuit Design
- EE531Probability and Stochastic Processes
- EE532Communication Network Analysis
- EE533Information Theory
- EE534Coding Theory
- EE535Communication Theory
- EE536Digital Communication Systems
- EE5410High-Speed and Embedded Computer Networking
- EE542Computer Networks
- EE5420Machine Learning by Probabilistic Models
- EE543Neurocomputers and Deep Learning
- EE546Switching and Automata Theory II
- EE5506Advanced Statistical Signal Processing
- EE553Optimization
- EE554Optimal Control Theory
- EE555Stability Theory of Dynamical Systems
- EE5555International Student Practice
- EE557Estimation Theory
- EE558System Identification & Adaptive Control
- EE559Intelligent Control
- EE561Advanced Static Power Conversion
- EE563Generalized Electrical Machine Theory
- EE564Design of Electrical Machines
- EE565Vector Control of Electrical Drives
- EE568Selected Topics on Electrical Machines
- EE569Special Topics in Power Electronics
- EE571Wave Propagation in Power Systems
- EE573Power System Stability and Dynamics
- EE574Power Sys.real-Time Monitoring & Control
- EE575Advanced High Voltage Techniques
- EE576High Voltage Measurement Techniques
- EE578Power System Planning
- EE579Economic Operation of Power Systems
- EE583Pattern Recognition
- EE584Machine Vision
- EE585Probabilistic Robotics
- EE586Artificial Intelligence
- EE587Introduction to Robotics
- EE590Seminar
- EE595Research Methods and Ethical Issues in Electrical and Electronics Engineering
- EE600Ph.d. Thesis
- EE601Func. Analysis&operator Theory with App.
- EE603Spectral Estimation
- EE604Sensor Array Signal Processing
- EE610Integrated Sensors and Sensor System
- EE614Principles of Laser Engineering
- EE615Optoelectronics
- EE617Principles of Analog VLSI Design
- EE618Principles of Digital Cmos VLSI Design
- EE619High Speed Semicon. Devices and Circuits
- EE625Fundamentals of Radar Systems I
- EE626Fundamentals of Radar Systems II
- EE627Principles of Modern Optical System
- EE634Digital Image Processing
- EE636Digital Video Processing
- EE674Computation.tech. in Power Sys. Analysis
- EE690Graduate Seminars
- EE707Intoduction to Electromagnetic Com.
- EE7074Advanced Topics in Power System State Estimation
- EE710Electricity Trading
- EE728Wireless Communications
- EE746Radar Signal Processing Techniques
- EE7551Discrete Event Systems: Modeling and Control
- EE7566Electric Drives in Electric and Hybrid Electric Vehicles
- EE783Pulsed Power Microwave Systems
- EE786Electrical Power Quality, Monitoring and Improvement
- EE793Target Tracking
- EE7999International Graduate Student Practice