5.00 crédits
30.0 h + 30.0 h
Q1
Enseignants
De Jaeger Emmanuel;
Langue
d'enseignement
d'enseignement
Préalables
Knowledge and practical application of the theory of electrical circuits and electromechanical converters, as covered in the courses LELEC1370 and LELEC1310
Thèmes abordés
-
Introduction to electric energy systems (generation, transmission, distribution, storage and end-use of electric power and their respective developments
-
Positioning of electricity as energy vector, electric energy systems overview and outlook,
-
Structure and architectures of electric power systems,
-
Modelling, calculation and optimization of electric power systems in steady state,
-
Planning and operation of electric power systems,
-
Introduction to economics of power systems and electricity markets,
- Introduction to Smart Grids
Acquis
d'apprentissage
d'apprentissage
A la fin de cette unité d’enseignement, l’étudiant est capable de : | |
1 | Contribution of the course to the program objectives In view of the LO frame of reference of the "Master Electrical Engineering", this course contributes to the development, acquisition and evaluation of the following learning outcomes: - AA1.1, AA1.2, AA1.3 - AA2.1, AA2.2 - AA3.3 - AA6.1 Specific LO of the course
|
Contenu
- Electricity as energy carrier, architecture and constitution of power systems,
- Power systems physical concepts and modelling: transmission and distribution links (power transformers, lines, cables), generators and sources (synchronous machines, renewable energy conversion systems), power electronics devices used for grid control and operation (HVDC links, Flexible AC Transmission Systems),
- Load-Flow calculation,
- Electrical power systems planning concepts,
- Optimal and secure operation of power systems (Optimal Power Flow, units commitment and economic dispatch problems, contingency analysis),
- Frequency and power control,
- Voltage control,
- State-estimation,
- Balanced faulty operation (short circuit), basic introduction to power grids protections.
Méthodes d'enseignement
- Lectures
- Practical sessions (supervised exercise sessions).
- Project to be carried out by groups of two students, based on the use of dedicated software for power systems design and analysis (This project is evaluated and taken into account in the final evaluation grade.)
Modes d'évaluation
des acquis des étudiants
des acquis des étudiants
Students will be assessed:
- Based on a project carried out in groups of two during the semester;
- Individually on the basis of a written or oral examination relating to the content of lectures and practice sessions
To constitute the final mark, the weighting given to the project is:
- 33% if the mark of the individual exam is higher than 10/20;
- 0% if the mark of the individual exam is less than 8/20;
- linearly progressive between 0%, if the individual exam mark is 8/20, and 33%, if the exam mark is 10/20
The project cannot be redone; the mark is acquired in the first quadrimester and kept in the event of a second session.
- Based on a project carried out in groups of two during the semester;
- Individually on the basis of a written or oral examination relating to the content of lectures and practice sessions
To constitute the final mark, the weighting given to the project is:
- 33% if the mark of the individual exam is higher than 10/20;
- 0% if the mark of the individual exam is less than 8/20;
- linearly progressive between 0%, if the individual exam mark is 8/20, and 33%, if the exam mark is 10/20
The project cannot be redone; the mark is acquired in the first quadrimester and kept in the event of a second session.
Autres infos
An optional test is organized in the middle of the semester. Successful completion of this test might result in a bonus point for the final mark (details on moodle)
Ressources
en ligne
en ligne
Bibliographie
- Reference textbook: Electric Energy Systems - Analysis and Operation (A. Gomez-Exposito, A.J. Conejo, C. Canizares)
- Copy of the slides
- Complementary documentation
Faculté ou entité
en charge
en charge
ELEC