Study programme 2018-2019Français
Power Systems Dynamics and Stability
Programme component of Master's Degree in Electrical Engineering Professional Focus - Electric Energy à la Faculty of Engineering
CodeTypeHead of UE Department’s
contact details
Teacher(s)
UI-M2-IRELEE-001-MCompulsory UELOBRY JacquesF901 - Physique Générale
  • LOBRY Jacques

Language
of instruction
Language
of assessment
HT(*) HTPE(*) HTPS(*) HR(*) HD(*) CreditsWeighting Term
  • Français
Français162000033.001st term

AA CodeTeaching Activity (AA) HT(*) HTPE(*) HTPS(*) HR(*) HD(*) Term Weighting
I-GELE-013Power Systems Dynamics and Stability1620000Q1100.00%
Programme component
Prérequis
Corequis

Objectives of Programme's Learning Outcomes

  • 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.
    • Argue to and persuade collaborators, clients, teachers and boards, both orally and in writing.
  • Imagine, implement and operate systems/solutions/software to address a complex problem in the field of electrical engineering as an essential source of energy in modern society by integrating needs, contexts and issues (technical, economic, societal, ethical and environmental).
    • Based on modelling and experimentation, design one or more systems/solutions/software addressing the problem raised; evaluate them in light of various parameters of the specifications.
    • Implement a chosen system/solution/software in the form of a drawing, a schema, 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, with a focus on electrical power engineering, using their expertise and adaptability.
    • Master and appropriately mobilise knowledge, models, methods and techniques related to the basics of electricity, electronics, automatic control, signal processing and analysis, telecommunications, electrotechnical engineering (electrical machines, power electronics), engineering of electricity grids (generation, transmission and distribution), the development of renewable energy sources (wind, photovoltaic), the development, implementation and environmentally-friendly use of electrical systems, and specific techniques for the numerical modelling of power devices.
    • Analyse and model a problem by critically selecting theories and methodological approaches (modelling, calculations), and taking into account multidisciplinary aspects.
    • Assess the validity of models and results in view of the state of science and characteristics of the problem.
  • Plan, manage and lead projects in view of their objectives, resources and constraints, ensuring the quality of activities and deliverables.
    • Define and align the project in view of its objectives, resources and constraints.
    • Assess the approach and achievements, regulate them in view of the observations and feedback received.
    • Respect deadlines and timescales
  • 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.
    • Argue to and persuade collaborators, clients, teachers and boards, both orally and in writing.

Learning Outcomes of UE

Understanding the transient behaviour of synchronous machine, its regulations and load models; understanding the angular and voltage stability problems in modern power systems and be able to propose stability enhancement solutions.

Content of UE

Dynamic modelling of synchronous machines, voltage and speed regulations, load models, angular stability: small and large perturbances, voltage stability.

Prior Experience

Circuit theory, control theory, synchronous machines in the steady-state and Park model, power systems.

Type of Assessment for UE in Q1

  • Presentation and/or works
  • Written examination

Q1 UE Assessment Comments

Project : study of the stability of a power grid.
Written exam : theory questions and one exercise about angular transient stability.
Weighting :
Project (20 h): 30%, Exam (3 h): 70%.
 

Type of Assessment for UE in Q3

  • Written examination

Q3 UE Assessment Comments

Written exam : same as Q1
Weighting :
Project (20 h): 30% (report 1st session), Exam (3 h): 70%.
 

Type of Resit Assessment for UE in Q1 (BAB1)

  • N/A

Q1 UE Resit Assessment Comments (BAB1)

Not applicable

Type of Teaching Activity/Activities

AAType of Teaching Activity/Activities
I-GELE-013
  • Cours magistraux
  • Ateliers et projets encadrés au sein de l'établissement
  • Projets supervisés

Mode of delivery

AAMode of delivery
I-GELE-013
  • Face to face

Required Reading

AARequired Reading
I-GELE-013

Required Learning Resources/Tools

AARequired Learning Resources/Tools
I-GELE-013Not applicable

Recommended Reading

AARecommended Reading
I-GELE-013

Recommended Learning Resources/Tools

AARecommended Learning Resources/Tools
I-GELE-013Not applicable

Other Recommended Reading

AAOther Recommended Reading
I-GELE-013J. Manchowski, J.W. Bialek, J.R. Bumby, Power system dynamics and stability, John Wiley and Sons, 1997.
P. Kundur, Power System Stability and Control, EPRI, Mc Graw-Hill, 1994.
T. Van Cutsem, Systèmes électriques de puissance II (aspects dynamiques), cours ELEC047, ULg, 2006.
C.W. Taylor, Power System Voltage Stability, EPRI, Mc Graw-Hill, 1994.

Grade Deferrals of AAs from one year to the next

AAGrade Deferrals of AAs from one year to the next
I-GELE-013Authorized
(*) 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 : 02/05/2019
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