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Content and learning outcomes
Fundamental principles for power system analysis, methods for analysis and design of power networks in steady state under symmetrical as well as unsymmetrical conditions.
Intended learning outcomes
After passing the course, the student shall be able to
- create mathematical models, analyse and carry out calculations for an electric power system under symmetrical as well as unsymmetrical conditions in steady state, and for load flow analysis.
- carry out the above-mentioned calculations numerically in Matlab and present and discuss received numerical results.
Literature and preparations
Knowledge in algebra and geometry, 7.5 higher education credits, equivalent to completed course SF1624.
Knowledge in one variable calculus, 7.5 higher education credits, equivalent to completed course SF1625.
Knowledge in multivariable analysis, 7.5 higher education credits, equivalent to completed course SF1626.
Knowledge in Matlab, 1.5 higher education credits, equivalent completed course SF1519/SF1546/EL1150.
Knowledge in Electric Power Systems, 6 higher education credits, equivalent completed course EJ1200.
Active participation in a course offering where the final examination is not yet reported in LADOK is considered equivalent to completion of the course. Registering for a course is counted as active participation. The term 'final examination' encompasses both the regular examination and the first re-examination.
Examination and completion
If the course is discontinued, students may request to be examined during the following two academic years.
- PRO2 - Project, 6.0 credits, grading scale: A, B, C, D, E, FX, F
Based on recommendation from KTH’s coordinator for disabilities, the examiner will decide how to adapt an examination for students with documented disability.
The examiner may apply another examination format when re-examining individual students.
Opportunity to complete the requirements via supplementary examination
Opportunity to raise an approved grade via renewed examination
- All members of a group are responsible for the group's work.
- In any assessment, every student shall honestly disclose any help received and sources used.
- In an oral assessment, every student shall be able to present and answer questions about the entire assignment and solution.
Further information about the course can be found on the Course web at the link below. Information on the Course web will later be moved to this site.Course web EG2100
Main field of study
EG2110 Power System Stability and Control 7.5 credits
Students who have not completed the course with the earlier examination should follow the new examination rules. However, final mark is given, and credit for the earlier test parts TENC and percent about a a Pass grade are received from the re-examination PRO1.
In this course, the EECS code of honor applies, see: