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Course

EECD1212908

ADVANCED DIGITAL COMMUNICATIONS

Electrical and Electronics Engineering

LECTURE
3
LAB
0
CREDITS
3
ECTS
8
LANGUAGEEnglishLEVELThird Cycle (Doctorate Degree)TYPEElective

AIM

Students will gain knowledge, skill and competency in the following subjects; 1) The functionality and performance metrics of all physical layer modules of a typical transmitter/receiver. 2) The key algorithms involved in the operations of those modules. 3) Specific communications technologies such as MIMO and OFDM.

CONTENT

This course contains; Shannon Theory Review,Nyquist Sampling and Single-Carrier Modulation,Statistical Detection and Error Performance,Wireless Channels,Channel Coding (1),Channel Coding (2),Channel Coding (3),Adaptive Filters,Equalization (1),Equalization (2),Equalization (3) ,NOMA,OFDM-NOMA,New Wireless Systems.

LEARNING OUTCOMES

  1. 1

    Calculate the entropy of the source by understanding the basics of information theory, source coding techniques.

    Taught by: Question - Answer Technique, Brainstorming Technique · Assessed by: Traditional Written Exam, Oral Exam

  2. 2

    Describe the performance of line codes and methods to mitigate inter-symbol interference.

    Taught by: Question - Answer Technique, Brainstorming Technique · Assessed by: Traditional Written Exam, Oral Exam

  3. 3

    Understands the generation of different bandpass modulation techniques, detection signal space diagram, spectrum, bandwidth efficiency and possibility of error analysis.

    Taught by: Question - Answer Technique, Brainstorming Technique · Assessed by: Traditional Written Exam, Oral Exam

  4. 4

    Determine the performance of different error control coding schemes for the reliable transmission of digital representation of signals and information over the channel.

    Taught by: Question - Answer Technique, Brainstorming Technique · Assessed by: Traditional Written Exam, Oral Exam

  5. 5

    Determine the bit error performance of different digital communication systems by understanding various spreading techniques.

    Taught by: Question - Answer Technique, Brainstorming Technique · Assessed by: Traditional Written Exam, Oral Exam

  6. 6

    Determines the performance of line codes and methods to reduce intersymbol interference.

    Taught by: Question - Answer Technique, Brainstorming Technique · Assessed by: Traditional Written Exam, Oral Exam

  7. 7

    Describe the performance of different error control coding schemes for the reliable transmission of digital representation of signals and information over the channel.

    Taught by: Question - Answer Technique, Brainstorming Technique · Assessed by: Traditional Written Exam, Oral Exam

WEEKLY PLAN

  1. WEEK 1

    Shannon Theory Review

  2. WEEK 2

    Nyquist Sampling and Single-Carrier Modulation

  3. WEEK 3

    Statistical Detection and Error Performance

  4. WEEK 4

    Wireless Channels

  5. WEEK 5

    Channel Coding (1)

  6. WEEK 6

    Channel Coding (2)

  7. WEEK 7

    Channel Coding (3)

  8. WEEK 8

    Adaptive Filters

  9. WEEK 9

    Equalization (1)

  10. WEEK 10

    Equalization (2)

  11. WEEK 11

    Equalization (3)

  12. WEEK 12

    NOMA

  13. WEEK 13

    OFDM-NOMA

  14. WEEK 14

    New Wireless Systems

ASSESSMENT

  • Rate of Midterm Exam to Success50%
  • Rate of Final Exam to Success50%

WORKLOAD

ACTIVITYCOUNTHOURSTOTAL
Course Hours14570
Guided Problem Solving000
Resolution of Homework Problems and Submission as a Report520100
Term Project000
Presentation of Project / Seminar000
Quiz000
Midterm Exam12525
General Exam13535
Performance Task, Maintenance Plan000

READING

  • John G. Proakis and Masoud Salehi, Digital Communications ,5th edition, McGraw-Hill, 2008
  • Bernard Sklar, Digital Communications: Fundamentals and Applications (2nd Edition) Hardcover – January 21, 2001

TEACHING STAFF

  • Prof.Dr. Hüseyin ARSLANCOORDINATOR
  • Prof.Dr. Hüseyin ARSLAN