Control Oriented Modelling of AC Actuators

Renewable Energy and Energy Efficiency - Management, Engineering and Application, Master (PO-2026)

Unique module numberETechn-9800-M
Module number / codeW-Sfax-01
Module nameControl Oriented Modelling of AC Actuators
Type of moduleElective module
Learning outcomes, acquired competencies and qualification goals

Electromagnetic modeling of AC actuators

After the successful participation in the course Induction Machine Modelling the students are able to:

  • make the synthesis and the implementation of induction machine vector control strategies
  • make the synthesis and the implementation of induction machine direct torque control strategies
  • make the synthesis and the implementation of induction machine direct power control strategies

After the successful participation in the course Synchronous Machine Modelling the students are able to:

  • make the synthesis and the implementation of synchronous machine vector control strategies,
  • make the synthesis and the implementation of synchronous machine direct torque control strategies,
  • make the synthesis and the implementation of synchronous machine maximum torque per ampere control strategies
Course typesVLmP+Ü (1 SWS); VLmP+Ü (1 SWS)
Content

Induction Machine Modelling

  • Principle of Operation: Induction Phenomenon
  • Model Simplification Hypothesis
  • IM A-B-C Model
  • Park Transform
  • IM Park Model
  • Park Model-Based Analysis of the IM Steady-State Operation

Synchronous Machine Modelling

  • Salient Pole SM A-B-C model
  • SM Park Model
  • Electromagnetic Torque Formulation
  • Operation at Maximum Torque
  • Operation at Unity Power Factor
  • Flux Weakening Operation
Title of coursesInduction Machine Modelling
Synchronous Machine Modelling
Teaching and learning methodslecture, exercise
Usabilitiy in other programs
Duration1 Semester
Frequency of module offerannually in summer semester
Teaching languageEnglish
Recommended (knowledge) prerequisites
Required prerequisites for participationnone
Student workload120 h (30 h course attendance, 90 h tutored project)
Required course worknone
Prerequisites for examination(s)none
Module examination(s)Examination P1: Induction Machine Modelling - written exam (90 min) (70%), tutored project defense (15 min) (30%)
Grade weighting P1: 50%
Examination P2: Synchronous Machine Modelling - written exam (90 min) (70%), tutored project defense (15 min) (30%)
Grade weighting P2: 50%
Credit points (ECTS)4 cp
Teaching unitElektrotechnik
Responsible personProf. Dahlhaus
Lecturer(s)Ahmed Masmoudi, Badii Bouzidi
Media usedblack board and beamer, case studies in groups, lab experiments, measurements
Recommended literature
Comments

4 cp (2 cp - Induction Machine Modelling; 2 cp - Synchronous Machine Modelling)