Study programme 2019-2020Français
Advanced Control
Programme component of Master's in Electrical Engineering à la Faculty of Engineering

Students are asked to consult the ECTS course descriptions for each learning activity (AA) to know what assessment methods are planned for the end of Q3

CodeTypeHead of UE Department’s
contact details
Teacher(s)
UI-M1-IRELEC-302-MCompulsory UEVANDE WOUWER AlainF107 - Automatique
  • DEWASME Laurent
  • RENOTTE Christine
  • VANDE WOUWER Alain

Language
of instruction
Language
of assessment
HT(*) HTPE(*) HTPS(*) HR(*) HD(*) CreditsWeighting Term
  • Anglais
Anglais, Français242400044.002nd term

AA CodeTeaching Activity (AA) HT(*) HTPE(*) HTPS(*) HR(*) HD(*) Term Weighting
I-AUTO-004Advanced Control2424000Q2100.00%
Programme component

Objectives of Programme's Learning Outcomes

  • Imagine, implement and operate systems/solutions/software to address a complex problem in the field of electrical engineering as a source of information by integrating needs, contexts and issues (technical, economic, societal, ethical and environmental).
    • Implement a chosen system/solution/software in the form of a drawing, a schema, a flowchart, an algorithm, a plan, a model, a prototype, software and/or digital model.
  • Mobilise a structured set of scientific knowledge and skills and specialised techniques in order to carry out electrical engineering missions, using their expertise and adaptability.
    • Master and appropriately mobilise knowledge, models, methods and techniques specific to electrical engineering.
    • Analyse and model a problem by critically selecting theories and methodological approaches (modelling, calculations), and taking into account multidisciplinary aspects.
  • Communicate and exchange information in a structured way - orally, graphically and in writing, in French and in one or more other languages - scientifically, culturally, technically and interpersonally, by adapting to the intended purpose and the relevant public.
    • Master technical English in the field of electrical engineering.

Learning Outcomes of UE

describe the dynamic behaviour of multiple-input multiple-output (MIMO) processes using state equations; linearize nonlinear state space equations; compute equilibrium points and analyze the local stability; compute the analytic solution of linear state space models; transform state space representation into canonical forms; compute matrices of transfert functions;  analyze controllability and observability of linear systems; design state feedback controllers and Luenberger observers; analyze input-output coupling and pairing using the relative gain array; compute decentralized control structures using PID controllers; apply these approaches either to continuous or discrete time systems.

Content of UE

State equations of continuous-time and discrete-time systems; stability analysis; commandability; observability; state feedback control; state estimation; Luenberger observer; decentralized control;

Prior Experience

differential equations, transfer functions, PID controller

Type of Assessment for UE in Q2

  • Oral Examination

Q2 UE Assessment Comments

Oral exam with a written preparation.

Type of Assessment for UE in Q3

  • Oral examination

Q3 UE Assessment Comments

Oral exam with a written preparation.

Type of Teaching Activity/Activities

AAType of Teaching Activity/Activities
I-AUTO-004
  • Cours magistraux
  • Conférences
  • Travaux pratiques
  • Travaux de laboratoire
  • Exercices de création et recherche en atelier
  • Projet sur ordinateur
  • Etudes de cas

Mode of delivery

AAMode of delivery
I-AUTO-004
  • Face to face

Required Reading

AA
I-AUTO-004

Required Learning Resources/Tools

AARequired Learning Resources/Tools
I-AUTO-004Not applicable

Recommended Reading

AA
I-AUTO-004

Recommended Learning Resources/Tools

AARecommended Learning Resources/Tools
I-AUTO-004Not applicable

Other Recommended Reading

AAOther Recommended Reading
I-AUTO-004D. H. Owens, Multivariable and optimal systems, Academic Press, 1981

Grade Deferrals of AAs from one year to the next

AAGrade Deferrals of AAs from one year to the next
I-AUTO-004Authorized
(*) HT : Hours of theory - HTPE : Hours of in-class exercices - HTPS : hours of practical work - HD : HMiscellaneous time - HR : Hours of remedial classes. - Per. (Period), Y=Year, Q1=1st term et Q2=2nd term
Date de génération : 13/07/2020
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Courriel: info.mons@umons.ac.be