EC3501 Wireless Communication Syllabus - Anna University
Access the updated Anna University EC3501 syllabus for Wireless Communication on LearnSkart. This Anna University subject syllabus PDF presents the updated semester 5 syllabus aligned with Regulation 2021 for Electronics and Communication Engineering students and related branches. It covers unit-wise subject unit topics and supports exam preparation syllabus planning for internal assessments and semester examinations under Anna University engineering syllabus standards.
What you get on this page
- Official Anna University EC3501 Wireless Communication syllabus for Electronics and Communication Engineering (Regulation 2021, Semester 5).
- Unit-wise breakdown and learning objectives.
- Direct download link for the syllabus PDF.
- SEO-optimized content for easy access.
- Quick links to related subjects and previous year question papers.
EC3501 WIRELESS COMMUNICATION
L T P C
3 0 2 4
COURSE OBJECTIVES:
- To understand the basics of wireless communication systems and cellular networks
- To learn path loss and propagation models in wireless communications
- To study the effect of fading on wireless communications and techniques to counter it
- To learn the principles of cellular network design and different cellular standards
- To understand the concept of diversity and its implementation techniques
UNIT I WIRELESS COMMUNICATION BASICS
Introduction to Wireless Communications - Applications - Advantages and disadvantages of wireless systems - Wireless system standards and regulatory requirements, RF and Microwave propagation basics, Wireless propagation channels - Frequency selective and time selective fading, Wireless communication systems - Point to point and cellular systems
UNIT II PROPAGATION MODELS AND LINK BUDGETS
Path loss - Free space propagation model, Ground reflected propagation model, Statistical path loss model - Okumura model, Hata model - Urban, rural and suburban models, Indoor propagation models. Propagation measurements and models, Log distance path loss model, Fading Models - Rayleigh fading, Rician fading - Statistical properties. Link budget and system performance
UNIT III FADING AND COUNTERMEASURES
Multipath fading - Flat fading and frequency selective fading, Small scale fading models - Rayleigh and Rician fading channels, Fading mitigation - Error correction coding, Interleaving, Equalization, Channel estimation. OFDM for frequency selective channels, Spread spectrum techniques - FHSS and DSSS
UNIT IV CELLULAR NETWORK DESIGN
Cellular network design - Frequency reuse, Interference, Co-channel interference and adjacent channel interference reduction, Handover concepts. Cellular standards - Global System for Mobile Communication (GSM) - 2G, Universal Mobile Telecommunications System (UMTS) - 3G, Long Term Evolution (LTE) - 4G, 5G - Key technologies and characteristics
UNIT V DIVERSITY TECHNIQUES
Diversity techniques - Spatial diversity - Receive diversity, Transmit diversity - Alamouti scheme, Selection combining, Equal gain combining, Maximal Ratio combining. Coding for diversity - Space time codes, Turbo codes and LDPC codes for wireless. Multi-antenna systems and MIMO
THEORY: 45 PERIODS
PRACTICAL EXERCISES: 30 PERIODS
TOTAL: 75 PERIODS
COURSE OUTCOMES:
At the end of the course the students will be able to
- CO1: Analyze the wireless propagation environment and its effects on signal transmission
- CO2: Compute the link budget of wireless communication systems
- CO3: Apply techniques to counter the effects of fading
- CO4: Design cellular networks with appropriate frequency reuse patterns
- CO5: Implement diversity techniques in wireless systems
TEXTBOOKS:
- Theodore S. Rappaport, "Wireless Communications", 2nd Edition, Prentice Hall, 2002. (Unit I, II, III, IV, V)
- John G. Proakis, "Digital Communications", 5th Edition, McGraw-Hill, 2007. (Unit III, V)
REFERENCES:
- Bernard Sklar, "Rayleigh Fading Channels in Mobile Digital Communication Systems, Part I: Characterization", IEEE Communications Magazine, Vol. 35, No. 7, July 1997
- Jakes, W.C., "Microwave Mobile Communications", IEEE Press, 1994
Frequently Asked Questions about LearnSkart Syllabus
Q1: What is LearnSkart?
LearnSkart is an academic platform that provides Anna University syllabus, previous year question papers, notes, and study resources to help engineering students prepare effectively for semester examinations.
Q2: Is the syllabus on LearnSkart updated according to Anna University regulations?
Yes. The syllabus provided on LearnSkart is aligned with the latest Anna University Regulation 2021 and 2025 syllabus for engineering courses.
Q3: Why is the Anna University syllabus important for exam preparation?
The official syllabus helps students understand unit-wise topics, important concepts, and the overall course structure required for internal and semester examinations.
Q4: Can I download the Anna University syllabus from LearnSkart?
LearnSkart provides easy access to Anna University syllabus pages where students can view the syllabus and understand all unit topics required for their subjects.