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EEM 443 - Wireless Communications

Faculty of Engineering and Natural Sciences · Electrical & Electronics Engineering (English 30%) · Undergraduate

ECTS: 5 T+P+L: 3+0+0 Departmental Elective
Coordinator: Dr. Öğr. Üyesi Mohammed SALEM
Instructors: Dr. Öğr. Üyesi Mohammed SALEM

Course Objective

The objective of this course is to study signal propagation and wireless channels in different environments to analyze wireless communication technologies. 

Course Content

Introduction to Mobile and Personal Communication Systems, Fundamentals of wireless communication systems, Wireless Signal Transmission, Cellular communication, Wireless mobile radio channels (Large and small scale fading), Wireless Communication Networks (WLAN, WPAN, WiFi), Digital Modulation, Multiple Access technology (TDMA, FDMA, CDMA), wireless signal propagation and antennas,  Satellite communication systems, Student Presentations. 

Course Learning Outcomes

  1. Recognize the fundamentals of wireless communication systems and technology.
  2. Understand wireless communication channels and the basics of radio signal propagation (including multipath effects and channel models).
  3. Explain concepts such as radio channel models, interference-limited communication, coding, modulation, anti-fading and balancing with receiver and transmitter antenna diversity techniques.
  4. Define concepts such as frequency reuse, cellular hierarchy, sectorization, intercellular transitions and power control.
  5. Examine the new personal communication systems and communication services.
  6. Define important terminologies and concepts (e.g., wireless mobile, cellular, mobility, data/voice/multimedia, circuit-switched, packet-switched).
  7. Present the various systems and standards developed (including 4G and 5G systems), and basic design problems.
  8. Explain spread spectrum techniques (DSSS code division multiple access (CDMA), frequency hopping).
  9. Use MATLAB software for wireless communication simulations and project implementations, work in teams and write reports.

Core Area Distribution

(46) Mathematics and Statistics%10 (48) Computing%10 (52) Engineering and Engineering Trades%80

Teaching Methods

ExpressionQuestion-AnswerDiscussionExercise and PracticeExperiment - Test / Lab/ Workshop / Field PracticeProblem SolvingProject Based Learning (Including Field Work)

Assessment & Evaluation

HomeworkPerformance Assignment ( Lab / Workshop / Field Work / Seminar / Presentation / Completion Study / ThesisProject / DesignTesting (Essay / Tests: True-Falls, multiple-choice, short answer, matching)

ECTS / Workload

ActivityQuantityDuration (h)Total Workload
Course Duration (Including Exam Week)15345
Out of Class Study Period13339
Midterm166
Quiz000
Assignment2510
Practice21020
Final166

Course Schedule

WeekSubjectPreparation
1Introduction to Wirless Communication Systems FundamentalsRapapport, Ch. 1.
2Wireless Signal TransmissionGoldsmith, Ch. 2
3Wireless signal propagation and antennasapapport, Ch. 3
4Wireless mobile radio channelsRapapport, Ch. 3
5Small and Large Scale FadingRapapport, Ch. 3
6Cellular communicationRapapport, Ch. 2
7Midterm ExamCh. 1+2+3
8Cellular communicationRapapport, Ch. 2
9Digital ModulationRapapport, Ch. 5
10Multiple Access technology (TDMA, FDMA, CDMA)Rapapport, Ch. 8
11Satellite CommunicationsRoddy, Ch.7
12Satellite CommunicationsRoddy, Ch. 8
13Wireless Communication Networks WLAN & WiFiRapapport, Ch. 9, 10
14Student ProjectMATLAB Simulink
15Final ExamGoldsmith, Ch. 2 + Rapapport, Ch. 1,2,3,5,8,9 & 10. + MATLAB Simulink + Roddy, Ch.7 & 8.