2027 Unit information is now available. View 2027 unit information
Planned Year of Introduction: 2027
Introduction
This unit introduces students to the fundamentals of power system analysis, power generation principles, and transmission line design, with a focus on both conventional and renewable energy sources such as solar, wind, and hydro. Students will explore how these energy sources integrate into modern sustainable power networks, gaining skills in power system modeling, operation and stability of distribution and transmission networks, while considering climate safe approaches, efficiency, economics, and environmental impact.
Through a combination of theoretical study, practical laboratory experiments, and project-based learning, students will analyse power flow in power systems, reactive power control and voltage management in meshed networks and will assess basic system stability. The unit also introduces aspects of grid reliability and technological advancements, preparing students to evaluate and design power systems that accommodate renewable energy generation and society's future energy needs.
By engaging with industry-standard tools and simulation techniques, students will develop a strong foundation in power system operation and sustainability, equipping them with the analytical and technical expertise necessary for advanced study and professional practice.
Summary
| Unit name | Sustainable Power Systems |
| Unit code | ENG326 |
| Credit points | 12.5 |
| College/School | Sciences and Engineering School of Engineering |
| Discipline | Engineering |
| Coordinator | Associate Professor Evan Franklin |
| Available as an elective? | Yes |
| Delivered By | University of Tasmania |
| Level | Advanced |
Sustainable Development Goals
The Unit Coordinator has identified that this unit aligns with the following UN Sustainable Development Goals. We welcome your thoughts and feedback on the alignment of the unit with these goals.
Learning Outcomes
- Describe and represent the key components of a power system using standard conventions and modeling techniques.
- Design and evaluate transmission lines in power networks with renewable generation sources.
- Analyse complex power ¿ow, voltage management and stability in transmission networks.
- Assess transmission line performance and make recommendations for enhancing grid reliability and accommodating renewble energy generation and storage devices.
Fee Information
| Field of Education | Commencing Student Contribution 1,3 | Grandfathered Student Contribution 1,3 | Approved Pathway Course Student Contribution 2,3 | Domestic Full Fee 4 |
|---|---|---|---|---|
| not applicable |
1 Please refer to more information on student contribution amounts.
2 Please refer to more information on eligibility and Approved Pathway courses.
3 Please refer to more information on eligibility for HECS-HELP.
4 Please refer to more information on eligibility for FEE-HELP.
If you have any questions in relation to the fees, please contact UniConnect or more information is available on StudyAssist.
Please note: international students should refer to What is an indicative Fee? to get an indicative course cost.
Requisites
Prerequisites
ENG214 Electrical MachinesTeaching
| Teaching Pattern | 1 x 2 hour lecture, 1 x 2 hour tutorial, 2 hours labs per fortnight |
|---|---|
| Assessment | Final Exam (30%)|Renewable Energy Grid Connection Design Project (30%)|Laboratory (40%) |
| Timetable | View the lecture timetable | View the full unit timetable |
Textbooks
| Required |
Required readings will be listed in the unit outline prior to the start of classes. |
|---|
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