5 ECTS credits
135 u studietijd

Aanbieding 1 met studiegidsnummer 4016308ENR voor alle studenten in het 1e semester met een verdiepend master niveau.

Semester
1e semester
Inschrijving onder examencontract
Niet mogelijk
Beoordelingsvoet
Beoordeling (0 tot 20)
2e zittijd mogelijk
Ja
Onderwijstaal
Engels
Onder samenwerkingsakkoord
Onder interuniversitair akkoord mbt. opleiding
Faculteit
Faculteit Ingenieurswetenschappen
Verantwoordelijke vakgroep
Elektrotechniek-Energietechniek
Externe partnerinstelling(en)
Université libre de Bruxelles
Onderwijsteam
Pierre Henneaux (titularis)
Decaan IR
Onderdelen en contacturen
30 contacturen Hoorcollege
30 contacturen Werkcolleges, practica en oefeningen
Inhoud

The valid fiche can be found at the following link : https://www.ulb.be/en/programme/elec-h413-1

Bijkomende info

co-titulars are: Jonathan Sprooten (ULB) and Rafael Feito-Kiczak (ULB)

Leerresultaten

Algemene competenties

At the end of this course the students will be able to :

- Establish a static model of a power system
- Implement a load flow algorithm, with different variants
- Implement a state estimation using a weighted least squares method
- Perform an economic dispatch and a unit commitment of the electricity generation
- Use an optimal power flow in various context
- Have an insight on the basics of the power system market mechanisms
- Study the security level of a power system faced to contingencies

Scientific competences

MA_B7 Can present and defend results in a scientifically sound way, using contemporary communication tools, for a national as well as for an international professional or lay audience

Scientific competences

MA_B8 Can collaborate in a (multidisciplinary) team

Scientific competences

MA_B10 Can develop, plan, execute and manage engineering projects at the level of a starting professional

Scientific competences

MA_B11 Can think critically about and evaluate projects, systems and processes, particularly when based on incomplete, contradictory and/or redundant information

Attitudes

MA_C12 Having a creative, problem-solving, result-driven and evidence-based attitude, aiming at innovation and applicability in industry and society

Attitudes

MA_C13 Having a critical attitude towards one's own results and those of others

Attitudes

MA_C14 Having consciousness of the ethical, social, environmental and economic context of his/her work and strives for sustainable solutions to engineering problems including safety and quality assurance aspects

Attitudes

MA_C15 Having the flexibility and adaptability to work in an international and/or intercultural context

Knowledge oriented competences

MA_A1 Having in-depth knowledge and understanding of exact sciences with the specificity of their application to engineering

Knowledge oriented competences

MA_A3 Having in-depth knowledge and understanding of the advanced methods and theories to schematize and model complex problems or processes

Knowledge oriented competences

MA_A17 Having a broad scientific knowledge, understanding and skills to be able to design, produce and maintain complex mechanical, electrical and/or energy systems with a focus on products, systems and services

Knowledge oriented competences

MA_A18 Having an in-depth scientific knowledge, understanding and skills in at least one of the subfields needed to design, produce, apply and maintain complex mechanical, electrical and/or energy systems

Knowledge oriented competences

MA_A19 Having an in-depth understanding of safety standards and rules with respect to mechanical, electrical and energy systems

Scientific competences

MA_B4 Can reformulate complex engineering problems in order to solve them (simplifying assumptions, reducing complexity)

Scientific competences

MA_B5 Can conceive, plan and execute a research project, based on an analysis of its objectives, existing knowledge and the relevant literature, with attention to innovation and valorization in industry and society

Scientific competences

MA_B6 Can correctly report on research or design results in the form of a technical report or in the form of a scientific paper

Beoordelingsinformatie

De beoordeling bestaat uit volgende opdrachtcategorieën:
Examen Andere bepaalt 100% van het eindcijfer

Binnen de categorie Examen Andere dient men volgende opdrachten af te werken:

  • Examen met een wegingsfactor 1 en aldus 100% van het totale eindcijfer.

    Toelichting: https://www.ulb.be/en/programme/elec-h413-1

Aanvullende info mbt evaluatie

Assessment mode : Report on the project + oral exam (absences during the exercises will be taken into account in the final result).

Exam requirements (teacher's highest priorities regarding assessment)

Starting from a given problem, the students must be able to describe an overview of the appropriate solving method. They also must be able to explain the details of the algorithms of the courses and to illustrate them on simple examples.

Toegestane onvoldoende
Kijk in het aanvullend OER van je faculteit na of een toegestane onvoldoende mogelijk is voor dit opleidingsonderdeel.

Academische context

Deze aanbieding maakt deel uit van de volgende studieplannen:
Master in de ingenieurswetenschappen: werktuigkunde-elektrotechniek: energie
Master of Electromechanical Engineering: Energy (enkel aangeboden in het Engels)