Course Code | COMP9313 |
Course Title | Big Data Management |
Units of Credit | 6 |
Course Website | https://webcms3.cse.unsw.edu.au/COMP9313/22T3 |
Handbook Entry | https://www.handbook.unsw.edu.au/postgraduate/courses/2022/COMP9313 |
This course introduces the core concepts and technologies involved in managing Big Data. It will first introduce the characteristics of big data and big data analysis. Then, we will learn the open-source big data management framework Hadoop. We will mainly focus on the learning of Hadoop MapReduce, and YARN, HDFS, HBase, and Hive will be briefly introduced. We will also learn an open-source memory-based distributed computing framework Spark. Another major focus of this course is algorithm design on large-scale data sets based on big data management frameworks, in a variety of domains such as data stream mining, graph data processing, and finding similar items.
Lecture Time (2 hours*2, online):
Consultation Time (1 hour, online ):
The complete course timetable is available here .
This course aims to introduce students to the concepts behind Big Data, the core technologies used in managing large-scale data sets, and a range of technologies for developing solutions to large-scale data analytics problems.
This course is intended for students who want to understand modern large-scale data analytics systems. It covers a wide range of topics and technologies. It will prepare students to be able to build such systems as well as use them efficiently and effectively to address challenges in big data management.
After completing this course, students will be able to:
The official prerequisite of this course is COMP9024/2521 and COMP9311/3311. Before commencing this course, students should:
The course involves lectures and practical work. Lectures aim to summarize the concepts and present case studies. The lab exercises aim to reinforce the topics covered in lectures (without assessment), while the assignments and projects aim to do the same (but are assessed). The course will have an emphasis on problem-solving for large-scale data sets.
Number | Name | Full Mark |
1** | Coding Project 1 | 12 |
2** | Coding Project 2 | 16 |
3** | Coding Project 3 | 22 |
4 | Final Exam | 50 |
Later Submission Penalties:
** : 5% reduction of your marks for up to 5 days |
The final mark is calculated by:
Final Mark= proj1 + proj2 + proj3 + FinalExam Double Pass: You also need to achieve at least 20 marks in the final exam to pass the course. |
The order that topics are covered in this course is probably not the best order for presenting them. The material is presented in lectures in an order that ensures that you are best prepared for the assignments.
The precise schedule is subject to change as the semester progresses.
Week | Lecturer |
1 | Course information + introduction to big data |
2 | Hadoop MapReduce 1 |
3 | Hadoop MapReduce 2 |
4 | Spark 1 (proj1 due) |
5 | Spark 2 |
6 | Recess Week |
7 | Mining Data Streams (proj2 due) |
8 |
Finding Similar Items
|
9 | NoSQL, HBase, and Hive |
10 | TBA , Revision, and exam preparation (proj3 due) |
The textbooks include:
Other references include:
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Student feedback from the last offerings indicated that students were satisfied with the course. The students suggest that more examples could be provided to help understand the theoretical concepts. We will endeavor to achieve this in this offering.Resource created Sunday 11 September 2022, 08:03:57 PM, last modified Saturday 22 October 2022, 03:47:31 PM.