Course detail
Electromechanical Systems
FEKT-MEMEAcad. year: 2017/2018
The subject is lectured in english language and is determined for those who want to improve their knowledge of technical english.Basic terminology of DC and AC electrical machines and transformers. Principle of operation of DC and AC electrical machines and transformers. Principle of operation of DC and AC electric drives. DC to DC and AC to DC innverters. Energy and power flow, efficiency.
Language of instruction
Number of ECTS credits
Mode of study
Guarantor
Learning outcomes of the course unit
- master basic english terminology of electric machines, appliances, power electronics and electric drives,
- describe main parts of electric machines in English,
- explain electric machines principle of operation in English,
- explain characteristics of basic power electronic components in English,
- explain principle of operation of basic power electronics circuits in English,
- explain DC and AC drives principle of operation in English,
- prepare and present technical problem in English.
Prerequisites
Co-requisites
Planned learning activities and teaching methods
Assesment methods and criteria linked to learning outcomes
Course curriculum
Electromechanical energy conversion.
Principle of operation and performance of a transformer.
Principle of operation and performance of an induction machine.
Principle of operation and performance of an synchoronous machine.
Active power electronic components.Diode, Thyristor, Power transistor.
Rectifiers.
Pulse inverters.
Switched Mode Power Supplies.
Electric drives. Definition, principle of operation.
DC drives.
AC drives.
Protection of electric installations.
Work placements
Aims
Specification of controlled education, way of implementation and compensation for absences
Recommended optional programme components
Prerequisites and corequisites
Basic literature
Majmudar, H.:Electromechanical Energy Converters,Allynaud Baron, USA. 1981.
Recommended reading
Classification of course in study plans
- Programme EEKR-M Master's
branch M-MEL , 2 year of study, winter semester, elective general
branch M-EVM , 2 year of study, winter semester, elective general
branch M-KAM , 2 year of study, winter semester, elective general
branch M-EEN , 2 year of study, winter semester, elective general
branch M-EST , 2 year of study, winter semester, elective general
branch M-SVE , 2 year of study, winter semester, elective general
branch M-TIT , 2 year of study, winter semester, elective general
branch M-BEI , 2 year of study, winter semester, elective general
branch M-MEL , 1 year of study, winter semester, elective general
branch M-EVM , 1 year of study, winter semester, elective general
branch M-KAM , 1 year of study, winter semester, elective general
branch M-EEN , 1 year of study, winter semester, elective general
branch M-EST , 1 year of study, winter semester, elective general
branch M-SVE , 1 year of study, winter semester, elective general
branch M-TIT , 1 year of study, winter semester, elective general
branch M-BEI , 1 year of study, winter semester, elective general - Programme EEKR-CZV lifelong learning
branch EE-FLE , 1 year of study, winter semester, elective general
Type of course unit
Lecture
Teacher / Lecturer
Syllabus
Electromechanical energy conversion.
Principle of operation and performance of a transformer.
Principle of operation and performance of an induction machine.
Principle of operation and performance of an synchoronous machine.
Active power electronic components.Diode, Thyristor, Power transistor.
Rectifiers.
Pulse inverters.
Switched Mode Power Supplies.
Electric drives. Definition, principle of operation.
DC drives.
AC drives.
Protection of electric installations.