Technische Universität Ilmenau

Modelling and Simulation in Power Engineering - Interactive curriculae of TU Ilmenau

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module properties module number 100497 - common information
module number100497
departmentDepartment of Electrical Engineering and Information Technology
ID of group2161 (Power Electronics and Control)
module leaderProf. Dr. Albrecht Gensior
languageDeutsch
term Sommersemester
previous knowledge and experience

Erfolgreicher Abschluss aller Grundlagenfächer des Studiengangs EET

learning outcome

Kap. 1: Grundsätze Netzberechnung
1.1 Stationäre Netzberechnung
1.2 Dynamische Netzberechnung
1.3 Beispiele

Kap. 2: Transiente Netzberechnung
2.1 Numerische Verfahren
2.1 Numerische Verfahren
2.3 Praktische Untersuchungen

Kap. 3: Feldberechnung
3.1 Finite Elemente
3.2 Simulationswerkzeuge
3.3 Beispiele


Kap. 4: Elektrische Maschinen
4.1 Übersicht Berechnungsmethoden elektrischer Maschinen
4.2 Simulation und Berechnungswege für Gleichstrommaschinen
4.3 Anwendungsbeispiel

Kap. 5: Elektrische Geräte und Anlagen
5.1 Methoden und Zielsetzungen
5.2 Modelltheorien zum Lichtbogen
5.3 Beispiel

Kap. 6: Leistungselektronische Systeme
6.1 Modellierungsarten und –grundsätze
6.2 Umsetzung Modellebenen
6.3 Anwendungsbeispiel Modellebenen
6.4 Idealer Schalter
6.5 Selbstgeführter Umrichter
6.6 Anwendungsbeispiel

content

- Systembeschreibung
- Analoge und digitale Simulation
- Objektorientierte Simulation

media of instruction and technical requirements for education and examination in case of online participation

Folien
Tafelbilder

 

https://moodle2.tu-ilmenau.de/course/view.php?id=2566

literature / references

[1] Milano, F. Power System Modelling and Scripting
[2] MATLAB The Language of Technical Computing, The MathWorks, Inc., Natick, Massachusetts, 2000
[3] MATLAB  Control System Toolbox, The MathWorks, Inc., Natick, Massachusetts, 2000
[4] Simulink Writing S-Functions, The MathWorks, Inc., Natick, Massachusetts, 2002
[5] MATLAB  Optimization Toolbox, Users's Guide, The MathWorks, Inc., Natick, Massachusetts, 2000

evaluation of teaching
Details reference subject
module nameModelling and Simulation in Power Engineering
examination number2100460
credit points5
SWS4
on-campus program (h)45
self-study (h)105
obligationobligatory module
examwritten examination performance, 180 minutes
details of the certificate

Schriftliche Prüfung

link to Moodle course
teacher
signup details for alternative examinations
maximum number of participants
Details in degree program Master Elektrotechnik und Informationstechnik 2014 (EET)
module nameModelling and Simulation in Power Engineering
examination number2100460
credit points5
on-campus program (h)45
self-study (h)105
obligationobligatory module
examwritten examination performance, 180 minutes
details of the certificate

Schriftliche Prüfung

link to Moodle course
signup details for alternative examinations
maximum number of participants