Course
EECY1214752
INTRODUCTION TO COMMUNICATION SYSTEM
Electrical and Electronics Engineering
- LECTURE
- 3
- LAB
- 0
- CREDITS
- 3
- ECTS
- 8
REQUIRES
None
REQUIRED BY
None
TAUGHT IN
AIM
This course introduces the fundamentals of communication systems theory. The course will introduce the fundamentals of analog and digital communications systems, while highlighting critical applications, system design aspects, and practical implementation considerations. The course content includes signals and systems concept, continuous modulation (Amplitude and frequency), modulation and demodulation, signal transmission and the effect of noise on its performance, sampling, digital modulation approaches, baseband modulation schemes, matched filtering, random process and bit error rate calculations.
CONTENT
This course contains; Introduction to communication systems and signals,Representations of Signals and Systems,Fourier Transform,Amplitude Modulation (AM),Angle Modulation,Probability,Random Process,Random Processes passing through systems,Analog to Digital Conversion,PCM Systems,Baseband Digital Transmission,Digital communication technologies,Digital Modulations : PSK, BFSK and ASK,Overview of Modern Communication Systems.
LEARNING OUTCOMES
- 1
1. Applies signals and systems into communication systems.
Taught by: Experimental Technique, Simulation Technique, Lecture Method · Assessed by: Traditional Written Exam, Homework, Project Task, Quiz
- 2
2. Uses the concept of Fourier Transform in communication systems.
Taught by: Experimental Technique, Simulation Technique, Lecture Method · Assessed by: Traditional Written Exam, Homework, Project Task, Quiz
- 3
3. Simulates main types of analog modulation techniques : AM and FM.
Taught by: Experimental Technique, Simulation Technique, Lecture Method · Assessed by: Traditional Written Exam, Homework, Project Task, Quiz
- 4
4. Demonstrates the transformation from analog to digital domain and vice versa through voice signals.
Taught by: Experimental Technique, Simulation Technique, Lecture Method · Assessed by: Traditional Written Exam, Homework, Project Task, Quiz
- 5
5. Demonstration of random process applications to digital communication systems.
Taught by: Experimental Technique, Simulation Technique, Lecture Method · Assessed by: Traditional Written Exam, Homework, Project Task, Quiz
- 6
6. Demonstration of digital baseband and passband transmission techniques and challenges encountered in a computer environment.
Taught by: Experimental Technique, Simulation Technique, Lecture Method · Assessed by: Traditional Written Exam, Homework, Project Task, Quiz
WEEKLY PLAN
- WEEK 1
Introduction to communication systems and signals
Preparation: Lecture notes 1 and Chapters 1 and 2 of the textbook 1.
- WEEK 2
Representations of Signals and Systems
Preparation: Lecture notes 2 and Chapters 2 of the textbook 1.
- WEEK 3
Fourier Transform
Preparation: Lecture notes and Chapter 2 of the textbook 1.
- WEEK 4
Amplitude Modulation (AM)
Preparation: Lecture notes 4 and Chapter 3 of the textbook 1.
- WEEK 5
Angle Modulation
Preparation: Lecture notes 5 and Chapter 4 of the textbook 1.
- WEEK 6
Probability
Preparation: Lecture notes 6 and Chapter 4 of the textbook 1.
- WEEK 7
Random Process
Preparation: Lecture notes 7, Chapter 5 of the Textbook 1, and Chapter 2 of Textbook 3.
- WEEK 8
Random Processes passing through systems
Preparation: Lecture notes 8, Chapter 5 of the Textbook 1, and Chapter 2 of Textbook 3.
- WEEK 9
Analog to Digital Conversion
Preparation: Lecture notes 9 and Chapter 7 of the textbook 1.
- WEEK 10
PCM Systems
Preparation: Lecture notes 10 and Chapter 7 of the textbook 1.
- WEEK 11
Baseband Digital Transmission
Preparation: Lecture notes 11, Chapter 8 of the Textbook 1, and Chapter 3 of Textbook 3
- WEEK 12
Digital communication technologies
Preparation: Lecture notes 12, Chapter 8 of the Textbook 1, and Chapter 3 of Textbook 3.
- WEEK 13
Digital Modulations : PSK, BFSK and ASK
Preparation: Lecture notes 13 and Chapter 9 of the textbook 1.
- WEEK 14
Overview of Modern Communication Systems
Preparation: Lecture notes 14 and survey papers of communication systems.
ASSESSMENT
- Rate of Midterm Exam to Success50%
- Rate of Final Exam to Success50%
WORKLOAD
| ACTIVITY | COUNT | HOURS | TOTAL |
|---|---|---|---|
| Course Hours | 14 | 4 | 56 |
| Guided Problem Solving | 10 | 2 | 20 |
| Resolution of Homework Problems and Submission as a Report | 4 | 24 | 96 |
| Term Project | 0 | 0 | 0 |
| Presentation of Project / Seminar | 1 | 32 | 32 |
| Quiz | 0 | 0 | 0 |
| Midterm Exam | 1 | 24 | 24 |
| General Exam | 1 | 24 | 24 |
| Performance Task, Maintenance Plan | 0 | 0 | 0 |
READING
- 1. Communication Systems 5th Edition by Simon Haykin and Michael Moher
- 2. Introduction to CommunicationSystems by Upamanyu Madhow, University of California, Santa Barbara http://www.ece.ucsb.edu/wcsl/Publications/intro_comm_systems_madhow_jan2014b.pdf ------------------------- 3. Digital Communications, 5th Edition by John Proakis (Author), Masoud Salehi ISBN-13: 978-0072957167 ISBN-10: 0072957166, complemantary Book Contemporary Comm. Systems
TEACHING STAFF
- Prof.Dr. Mehmet Kemal ÖZDEMİRCOORDINATOR
- Prof.Dr. Mehmet Kemal ÖZDEMİR