Course Information
SemesterCourse Unit CodeCourse Unit TitleT+P+LCreditNumber of ECTS CreditsLast Updated Date
2EEE636OPTICAL INFORMATION PROCESSING3+0+03619.06.2026

 
Course Details
Language of Instruction English
Level of Course Unit Master's Degree
Department / Program ELECTRICAL AND ELECTRONICS ENGINEERING
Type of Program Formal Education
Type of Course Unit Elective
Course Delivery Method Face To Face
Objectives of the Course The goal of the course is to enable students to develop their knowledge and understanding of
optical information processing and management techniques, physical principles of these
techniques, development trends and perspectives, as well as to provide students with an in-depth understanding of optical concepts related to optical information processing and management.
Course Content Two-dimensional signals and systems. Space-frequency representations. Signal transformations. Linear system formulation of propagation of light through free space, lenses, and lens-like media and their analogy with electrical systems. Analog signal and image processing with optical systems, including transformations, filtering, etc. Alternative mathematical formulations of optical propagation: geometrical optics, scalar wave theory, phase-space approaches, variational and Hamiltonian formulation, operator algebras. Invariants and conservation laws.
Course Methods and Techniques
Prerequisites and co-requisities None
Course Coordinator Prof.Dr. GÖLGE YETKİN https://eee.gantep.edu.tr/pages.php?url=akademik-personel-2 ogucu@gantep.edu.tr
Name of Lecturers Prof.Dr. GÖLGE ÖGÜCÜ YETKİN
Assistants None
Work Placement(s) No

Recommended or Required Reading
Resources The Fractional Fourier Transform with Applications in Optics and Signal Processing , H. M. Ozaktas, Z. Zalevsky, and M. A. Kutay , 2001, Wiley

Course Category
Engineering %100

Planned Learning Activities and Teaching Methods
Activities are given in detail in the section of "Assessment Methods and Criteria" and "Workload Calculation"

Assessment Methods and Criteria
In-Term Studies Quantity Percentage
Mid-terms 1 % 40
Assignment 2 % 20
Final examination 1 % 40
Total
4
% 100

 
ECTS Allocated Based on Student Workload
Activities Quantity Duration Total Work Load
Weekly lecture hours 14 3 42
Reading Activities 14 4 56
Internet browsing, library work 14 2 28
Report preparation 2 10 20
Midterm and midterm exam preparation 1 15 15
Final exam and preparation for the final exam 1 15 15
Total Work Load   Number of ECTS Credits 6 176

 
Course Learning Outcomes: Upon the successful completion of this course, students will be able to:
NoLearning Outcomes
1 Acquire the necessary mathematical, physical and signal theory background relevant to the subject
2 Be able to apply signal processing concepts to the study of optical systems
3 Be able to demonstrate their comprehension of physical optics concepts, fundamentals of Fourier optics, basics of holography, fundamentals of optical waveguides, principles of laser technology and technical capabilities, basics of nonlinear optics and nanophotonics.

 
Weekly Detailed Course Contents
WeekTopicsStudy MaterialsMaterials
1 Optik bilgi işleme ve iletiminin genel kavramları. Optoelektronik ve optiğin fiziksel temelleri General concepts of optical information processing and transmission. Physical foundations of optoelectronics and optics.
2 Işığın doğası ve özellikleri. Işığın fotonik teorisi ve ışığın dalga teorisi. Nature of light and its properties. Photonic theory of light and wave theory of light
3 Sinyaller, sistemler, dönüşümler dersinin gözden geçirilmesi Review of signals, systems, transformations
4 Zaman-frekans ve uzay-frekans gösterimleri, Fourier dönüşümü Time-frequency and space-frequency representations, Fourier transform
5 Doğrusal kanonik dönüşümler Linear canonical transformations
6 Işın optiği ve dalga optiği incelemesi Review of rays optics and wave optics
7 Fourier optiği Fourier optics
8 Faz-uzay optiği Phase-space optics
9 Tutarlı ve tutarsız optik görüntü işleme; Coherent and Incoherent optical image processing;
10 Korelasyon ve spektrum analizi için temel mimariler Fundamental architectures for correlation and spectrum analysis
11 İnterferometri
12 Ayrık analog optik işlemciler Discrete analog optical processors
13 Holografi; Holography;
14 3D Görüntüleme teknolojilerinin incelenmesi. Review of 3D Display technologies.

 
Contribution of Learning Outcomes to Programme Outcomes
P1 P2 P3 P4
All 5 5 1 5
C1 5 5 1 5
C2 5 5 1 5
C3 5 5 1 5

  bbb

  
  https://obs.gantep.edu.tr/oibs/bologna/progCourseDetails.aspx?curCourse=147975&lang=en