- Code ENGN6536
- Unit Value 6 units
- Offered by Research School of Engineering
- ANU College ANU College of Engineering and Computer Science
- Course subject Engineering
- Areas of interest Engineering
- Academic career PGRD
- Dr Nan Yang
- Mode of delivery In Person
- Co-taught Course
Second Semester 2017
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This course provides a comprehensive overview and advanced knowledge of modern mobile and wireless communication systems. Building on the prior knowledge on digital communications, students develop further understanding on the challenges and opportunities brought by the wireless medium in designing current and future wireless communication systems and networks. Topics include: overview of digital wireless communications, cellular concept; interference and traffic analysis for cellular networks; wireless fading channel modelling and characterization; modulation and detection performance over fading channels; equalization techniques; multi-carrier systems; spread spectrum techniques; receiver and transmitter diversity techniques; information theory of wireless channels; multiple antenna systems and space-time communications; and cooperative communications; 2G standards (e.g. GSM, CDMA), 3G standards and beyond.
Upon successful completion, students will have the knowledge and skills to:
1. Apply the cellular concepts to evaluate the signal reception performance in a cellular network.
2. Apply the traffic analysis to design cellular network with given quality of service constraints.
3. Determine the type and appropriate model of wireless fading channel based on the system parameters and the property of the wireless medium.
4. Analyse and design receiver and transmitter diversity techniques.
5. Determine the appropriate transceiver design of multi-antenna systems and evaluate the data rate performance.
6. Design wireless communication systems with key 3G (e.g., CDMA) and 4G (OFDM) technologies.
7. Describe and differentiate four generations of wireless standard for cellular networks.
8. ·Apply research skills to develop a deep understanding on an emerging wireless technology beyond the scope of the lecture materials and critically analyze the recent research outcomes.
Professional Skills Mapping
Mapping of Learning Outcomes to Assessment and Professional Competencies
Assignments (8%); Laboratory (3%); Mid-Semester Exam (15%); Projects (29%); Final Exam (45%)
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WorkloadA standard workload of approximately 10 hours/week including the following formal contact hours for the whole semester: 24 x 2-hour lectures, 6 x 1-hour tutorials, 1 x 3-hour hardware laboratory. Apart from these, approximately 5 hours per week is required for independent and group-based study.
Requisite and Incompatibility
- Main: A.J. Goldsmith, Wireless Communications, Cambridge University Press, First Edition, 2005.
- Suggested: T.S. Rappaport, Wireless Communications: Theory and Practice, Prentice Hall, Second Edition, 2002
Tuition fees are for the academic year indicated at the top of the page.
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- Student Contribution Band:
- Unit value:
- 6 units
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Offerings, Dates and Class Summary Links
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Class summaries, if available, can be accessed by clicking on the View link for the relevant class number.
|Class number||Class start date||Last day to enrol||Census date||Class end date||Mode Of Delivery||Class Summary|
|7983||24 Jul 2017||31 Jul 2017||31 Aug 2017||27 Oct 2017||In Person||N/A|