Wireless Networks (8227.5)
Available teaching periods | Delivery mode | Location |
---|---|---|
View teaching periods | On-campus |
Bruce, Canberra |
EFTSL | Credit points | Faculty |
0.125 | 3 | Faculty Of Science And Technology |
Discipline | Study level | HECS Bands |
Academic Program Area - Technology | Level 2 - Undergraduate Intermediate Unit | Band 2 2021 (Commenced After 1 Jan 2021) Band 3 2021 (Commenced Before 1 Jan 2021) |
This unit may be cotaught with 10100 Wireless Networks PG.
Learning outcomes
On successful completion of this unit students will be able to:1. Identify the basic concept of wireless networks;
2. Analyse traffic theories, mobile radio propagation, channel coding, and cellular concepts;
3. Compare and contrast multiple division techniques, mobile communication systems, and existing wireless networks;
4. Classify network protocols, ad hoc and sensor networks, wireless MANs, LANs and PANs; and
5. Apply wireless ID technologies, in particular RFID work.
Graduate attributes
1. UC graduates are professional - communicate effectively1. UC graduates are professional - employ up-to-date and relevant knowledge and skills
1. UC graduates are professional - use creativity, critical thinking, analysis and research skills to solve theoretical and real-world problems
1. UC graduates are professional - work collaboratively as part of a team, negotiate, and resolve conflict
2. UC graduates are global citizens - make creative use of technology in their learning and professional lives
3. UC graduates are lifelong learners - adapt to complexity, ambiguity and change by being flexible and keen to engage with new ideas
3. UC graduates are lifelong learners - reflect on their own practice, updating and adapting their knowledge and skills for continual professional and academic development
Prerequisites
11485 Introduction to Network EngineeringCorequisites
None.Incompatible units
10100 Wireless Networks PG.Equivalent units
None.Assumed knowledge
None.Year | Location | Teaching period | Teaching start date | Delivery mode | Unit convener |
---|---|---|---|---|---|
2024 | Bruce, Canberra | Semester 1 | 05 February 2024 | On-campus | Dr Md Farhad Hossain |
2025 | Bruce, Canberra | Semester 1 | 03 February 2025 | On-campus | Dr Md Farhad Hossain |
Required texts
Textbook
- Jack L. Burbank, Julia Andrusenko, Jared S. Everett and William T.M. Kasch. Wireless Networking: Understanding Internetworking Challenges. Wiley-IEEE Press, 2013.
Reference book:
- Vijay K. Garg. Wireless Communications and Networking. Morgan Kaufmann Publishers, 2007
- J. W. Mark and W. Zhuang. Wireless Communications and Networking. Prentice Hall, 2002
- B. A. Forouzan. Data Communications and Networking. McGraw Hill, 5th edition, 2013.
Online materials:
Lecture materials, lab materials, tutorial questions and answers, assignment specifications, and other details are available on the unit Canvas site.
Submission of assessment items
Special assessment requirements
All assessment items will receive a numerical mark. The final grade will be a weighted average of the individual assessment items.
An aggregate mark of 50% is required to pass the unit. In addition, following criteria have to be meet for passing this unit:
- Students need to achieve at least 50% of the total marks in the Group Project to pass this unit.
- Students need to achieve at least 50% of the total marks in the Research Paper to pass this unit.
- Students will have to submit all the assessment items.
The final grade for the subject is then determined according to the following table:
85 <= Final mark <= 100 |
Final grade = HD |
75 <= Final mark < 85 |
Final grade = DI |
65 <= Final mark < 75 |
Final grade = CR |
50 <= Final mark < 65 |
Final grade = P |
0 <= Final mark < 50 |
a final grade (NX, NC, or NN) |
The unit convenor reserves the right to question students on any of their submitted work for moderation and academic integrity purposes, which may result in an adjustment to the marks awarded for a specific task.
Students must apply academic integrity in their learning and research activities at UC. This includes submitting authentic and original work for assessments and properly acknowledging any sources used.
Academic integrity involves the ethical, honest and responsible use, creation and sharing of information. It is critical to the quality of higher education. Our academic integrity values are honesty, trust, fairness, respect, responsibility and courage.
UC students have to complete the annually to learn about academic integrity and to understand the consequences of academic integrity breaches (or academic misconduct).
UC uses various strategies and systems, including detection software, to identify potential breaches of academic integrity. Suspected breaches may be investigated, and action can be taken when misconduct is found to have occurred.
Information is provided in the Academic Integrity Policy, Academic Integrity Procedure, and 麻豆村 of Canberra (Student Conduct) Rules 2023. For further advice, visit Study Skills.
Learner engagement
Activity |
Time (hrs) |
Lectures attending (2*13) |
24 |
Lectures preparation (2*12) |
24 |
Labs attending (2*6) |
12 |
Online Tests/Labs preparation |
30 |
Project |
30 |
Research Paper |
30 |
Total = 150 hours
Participation requirements
Your participation in both class, laboratory work, and online activities will enhance your understanding of the unit content and therefore the quality of your assessment responses. Lack of participation may result in your inability to satisfactorily pass assessment items.
Required IT skills
Basic Python programming
Work placement, internships or practicums
Not applicable for this unit.
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- Semester 1, 2021, On-campus, UC - Canberra, Bruce (200416)
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- Semester 1, 2019, On-campus, UC - Canberra, Bruce (185052)
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