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Course

EEE4210344

DIGITAL SIGNAL PROCESSING

Electrical and Electronics Engineering

LECTURE
3
LAB
0
CREDITS
3
ECTS
6
LANGUAGEEnglishLEVELFirst Cycle (Bachelor's Degree)TYPEElective

AIM

This is a fourth-year undergraduate course on the fundamentals of discrete-time signal processing (DSP). This course provides the students with a solid background in theory and design of DSP systems. Different transformation techniques, conversion from analog to digital and vice versa, digital filter structures, and their application to real systems are covered. The theory is realized via Matlab simulations.

CONTENT

This course contains; Introduction to Discrete-Time Signals and Systems. ,Discrete LTI Systems,Z-Transform,Sampling of Continuous-Time Signals,Multi-rate signal Processing and Introduction to Discrete Random Process,Transform Analysis of LTI Systems – Part A,Transform Analysis of LTI Systems – Part B,Midterm overview,Structure for Discrete-Time Systems : Block Diagrams and IIR Systems,Structure for Discrete-Time Systems : FIR Systems and Quantization Effect,Digital Filter Design Techniques – Part A,Digital Filter Design Techniques – Part B,The Discrete Fourier Transform – Part A,The Discrete Fourier Transform – Part B,Discrete Stochastic Processes and Systems.

LEARNING OUTCOMES

  1. 1

    1. Applies the basics of LTI systems and transformation approaches in analyzing LTI systems.

    Taught by: Simulation Technique, Lecture Method · Assessed by: Traditional Written Exam, Homework, Project Task, Quiz

  2. 2

    2. Samples lowpass and bandpass signals.

    Taught by: Simulation Technique, Lecture Method · Assessed by: Traditional Written Exam, Homework, Project Task, Quiz

  3. 3

    3. Designs LTI IIR and FIR filters.

    Taught by: Simulation Technique, Lecture Method · Assessed by: Traditional Written Exam, Homework, Project Task, Quiz

  4. 4

    4. Uses DFT and FFT techniques effectively.

    Taught by: Simulation Technique, Lecture Method · Assessed by: Traditional Written Exam, Homework, Project Task, Quiz

  5. 5

    5. Analyzes discrete stochastic systems.

    Taught by: Simulation Technique, Lecture Method · Assessed by: Traditional Written Exam, Homework, Project Task, Quiz

WEEKLY PLAN

  1. WEEK 1

    Introduction to Discrete-Time Signals and Systems.

    Preparation: Notes and Oppenheim Chapters 1 & 2

  2. WEEK 2

    Discrete LTI Systems

    Preparation: Notes and Oppenheim Chapter 2

  3. WEEK 3

    Z-Transform

    Preparation: Notes and Oppenheim Chapter 3

  4. WEEK 4

    Sampling of Continuous-Time Signals

    Preparation: Notes and Oppenheim Chap. 4

  5. WEEK 5

    Multi-rate signal Processing and Introduction to Discrete Random Process

    Preparation: Notes and Oppenheim Chap. 4

  6. WEEK 6

    Transform Analysis of LTI Systems – Part A

    Preparation: Notes and Oppenheim Chap. 5

  7. WEEK 7

    Transform Analysis of LTI Systems – Part B

    Preparation: Notes and Oppenheim Chap. 5

  8. WEEK 8

    Midterm overview

    Preparation: Notes till Week 7 and textbook chapters 1-5

  9. WEEK 9

    Structure for Discrete-Time Systems : Block Diagrams and IIR Systems

    Preparation: Notes and Oppenheim Chap. 6

  10. WEEK 10

    Structure for Discrete-Time Systems : FIR Systems and Quantization Effect

    Preparation: Notes and Oppenheim Chap. 6

  11. WEEK 11

    Digital Filter Design Techniques – Part A

    Preparation: Notes and Oppenheim Chap. 7

  12. WEEK 12

    Digital Filter Design Techniques – Part B

    Preparation: Notes and Oppenheim Chap. 7

  13. WEEK 13

    The Discrete Fourier Transform – Part A

    Preparation: Notes and Oppenheim Chap. 8

  14. WEEK 14

    The Discrete Fourier Transform – Part B

    Preparation: Notes and Oppenheim Chap. 8

  15. WEEK 15

    Discrete Stochastic Processes and Systems

    Preparation: Notes and Vetterli Chap. 3

ASSESSMENT

  • Rate of Midterm Exam to Success30%
  • Rate of Final Exam to Success70%

WORKLOAD

ACTIVITYCOUNTHOURSTOTAL
Course Hours14342
Guided Problem Solving000
Resolution of Homework Problems and Submission as a Report41872
Term Project000
Presentation of Project / Seminar414
Quiz515
Midterm Exam11818
General Exam12424
Performance Task, Maintenance Plan000

READING

  • Discrete-Time Signal Processing by Alan V. Oppenheim and Ronald W. Schafer Prentice Hall (Pearson) ISBN 978013 1988422
  • Foundations of Signal Processing, M. Vetterli, M. Kovacevic and V. Goyal , 2013, Cambridge University Press

TEACHING STAFF

  • Prof.Dr. Mehmet Kemal ÖZDEMİRCOORDINATOR
  • Prof.Dr. Mehmet Kemal ÖZDEMİR
  • Prof.Dr. İlteriş DEMİRKIRAN