THE UNIVERSITY of EDINBURGH

DEGREE REGULATIONS & PROGRAMMES OF STUDY 2015/2016
- ARCHIVE as at 1 September 2015

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DRPS : Course Catalogue : School of Engineering : Postgrad (School of Engineering)

Postgraduate Course: Power Systems Engineering and Economics (PGEE11016)

Course Outline
SchoolSchool of Engineering CollegeCollege of Science and Engineering
Credit level (Normal year taken)SCQF Level 11 (Postgraduate) AvailabilityAvailable to all students
SCQF Credits20 ECTS Credits10
SummaryThe aims of the course are to:

- Build off Electrical Engineering Fundamentals of Renewable Energy and Power Systems and Machines 4;

- Increase knowledge and understanding of power systems analysis and operation;

- Provide hands-on power systems modelling experience;

- Simulate evolving operation of electricity generation transmission and distribution systems with increasing renewable content;

- Recognise transition to a lower-carbon energy system and the economic implications;

- Combine power system analysis and economic appraisal to provide insight and ability for the future.

There is no written exam but there are three equally-weighted assignments which are marked and returned.
Course description In the last part of the course they are introduced to a few of the principles of power system economics. The main regulatory regimes are discussed together with the pricing principles. Then they use PowerWorld to evaluate the effect of geography and networks on energy prices, i.e. locational marginal pricing.

Week 8 L10 Market fundamentals, price and cost
Week 9 L11 Ancillary services
Week 10 L12 Locational marginal pricing

Tutorials: One per teaching week in the lab.

Entry Requirements (not applicable to Visiting Students)
Pre-requisites Students MUST have passed:
Co-requisites
Prohibited Combinations Other requirements None
Information for Visiting Students
Pre-requisitesfirst-degree courses covering AC circuit analysis, three-phase circuits, real and reactive power and fundamentals of power systems, Fundamentals of Renewable Energy
High Demand Course? Yes
Course Delivery Information
Academic year 2015/16, Available to all students (SV1) Quota:  None
Course Start Semester 2
Timetable Timetable
Learning and Teaching activities (Further Info) Total Hours: 200 ( Supervised Practical/Workshop/Studio Hours 50, Formative Assessment Hours 1, Summative Assessment Hours 20, Programme Level Learning and Teaching Hours 4, Directed Learning and Independent Learning Hours 125 )
Assessment (Further Info) Written Exam 0 %, Coursework 100 %, Practical Exam 0 %
Additional Information (Assessment) Assessment will be based on the following components:
Attendance at and participation in exercises.
Satisfactory completion of a number of assignments.


Assessment will be made on the basis of:
coursework 100%.

The student must satisfy the pass mark of 50%.
Feedback Not entered
No Exam Information
Learning Outcomes
On completion of this course, the student will be able to:
  1. Theoretical understanding of power system operation and analysis.
  2. Ability to apply literative methods of solve network power flow
  3. Ability to use a power-flow simulation software package
  4. Ability to model generation, transmission and distribution of electricity
  5. Ability to model the integration of renewable energy into the electricity network.
Reading List
Power System Analysis,
- H Saadat, (McGraw Hill) 1999 Power System Analysis and Design,
- J D Glover, M S Sarma, (Thomson Learning) 2002 Embedded Generation
- Jenkins, Allan, Crossley, Kirschen & Strbac, (IET) 2008 Fundamentals of Power System Economics,
- D S Kirschen, G Strbac, (J. Wiley) 2004 Power System Economics
- S Stoft, (Wiley-Interscience) 2002
Additional Information
Graduate Attributes and Skills Not entered
Additional Class Delivery Information 20 hour(s) per week for 5 week(s).
KeywordsNot entered
Contacts
Course organiserDr Sasa Djokic
Tel: (0131 6)50 5595
Email: Sasa.Djokic@ed.ac.uk
Course secretaryMrs Sharon Potter
Tel: (0131 6)51 7079
Email: Sharon.Potter@ed.ac.uk
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