MSc Electrical Power Systems Engineering / Course details
Year of entry: 2025
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Course description
Power system engineering is about keeping things in balance. Not just the balance between generation and load, but also about the balance between the cost of energy and its environmental impact or the balance between the security-reliability of the supply and the investments needed to develop the system.
This programme will teach you how to apply technological advances and implement sophisticated computing techniques to power systems.
The course has been significantly improved in several areas: you will learn static and dynamic modelling of electric machines and power electronics. You will be able to apply this modelling in dynamics and stability assessment, with particular emphasis on power converters stability. You will also learn control aspects of micro-grids, technologically advanced solutions in distribution networks, the fundamentals of communications in power systems, as well as the resilience aspects in modern power systems.
During the first semester, you will learn about the power system physical phenomena and their static and dynamic modelling. You will do coursework in computer simulations and laboratories. In the second semester, you will apply the acquired knowledge to study stability, modern distribution networks, protection with communications, as well as planning and reliability of power systems.
During the summer, your MSc dissertation project gives you a chance to develop your research skills and to explore in depth one of the topics discussed during the course.
Aims
Coursework and assessment
You are required to take seven examinations. In addition, course work (eg lab reports) accounts for typically 20% of the mark for each course unit. One course units is assessed on the basis of course work only. The summer research project is assessed on the basis of a dissertation of about 50 pages.
Course unit list
The course unit details given below are subject to change, and are the latest example of the curriculum available on this course of study.
Title | Code | Credit rating | Mandatory/optional |
---|---|---|---|
Dissertation | EEEN60070 | 60 | Mandatory |
Electrical Energy Systems | EEEN60302 | 15 | Mandatory |
Power System Operation and Economics | EEEN60321 | 15 | Mandatory |
Power System Dynamics and Stability | EEEN60342 | 15 | Mandatory |
Smart Grids & Sustainable Electricity Systems | EEEN60352 | 15 | Mandatory |
Power System Plant and Asset Management | EEEN60371 | 15 | Mandatory |
Power System Analysis and Control | EEEN60631 | 15 | Mandatory |
Techniques for Research and Industry | EEEN61352 | 15 | Mandatory |
Power System Protection and Communications | EEEN64422 | 15 | Mandatory |
Facilities
Excellent facilities
With access to an extensive range of leading facilities , you will get hands-on with industry-standard equipment - improving your knowledge and skills, and preparing you for work post-graduation. Our flagship facilities include the High Voltage Lab and Photon Science Institute .
The future of learning in Manchester
Our Home for Engineering and Materials Science is transforming the way our students study, research and shape the world forever. Now, more than ever, is the time to study at the University of Manchester.
At the heart of the building’s design is a desire to bring together all disciplines, in one connected and dynamic environment. The space supports a variety of teaching and learning styles, through blended lecture theatres, multi-purpose study spaces and over 250 state-of-the-art laboratories. There is also a range of technical spaces to help encourage students to shape their own learning environment.
We want our facilities to show ambition as well as recognise the real-world challenges that students will face in addressing some of the most pressing issues of our time. Our Home for Engineering and Materials Science boasts some of the most unique, industry-leading equipment and instrumentation in the sector to meet today’s requirements and those of the future.