Fundamentals of Electrical Power Engineering
BASIC DATA
course listing
A - main register
course code
AEK0210
course title in Estonian
Sissejuhatus elektroenergeetikasse
course title in English
Fundamentals of Electrical Power Engineering
course volume CP
4.00
ECTS credits
6.00
to be declared
yes
fully online course
not
assessment form
Examination
teaching semester
autumn
language of instruction
Estonian
English
Study programmes that contain the course
code of the study programme version
course compulsory
EAAB16/26
yes
Structural units teaching the course
EE - Department of Electrical Power Engineering and Mechatronics
Course description link
Timetable link
View the timetable
Version:
VERSION SPECIFIC DATA
course aims in Estonian
Õppeaine eesmärk on anda terviklik ja üldine ülevaade elektroenergeetikast, alates energiaressurssidest ning lõpetades elektrienergia kasutamisega ning luua teoreetiline baas elektroenergeetika eriala ainetele. Lisaks anda teadmisi energiaseadmete toimest keskkonnale ja esmasest ohutustehnikast.
course aims in English
The aim of this course is to provide a comprehensive and general overview of electrical power engineering, from energy resources to the utilization of electrical energy and establish a theoretical foundation for subjects in the field of electrical power engineering. Also to provide knowledge of the environmental impact of energy equipment and basic safety principles.
learning outcomes in the course in Est.
Õppeaine läbinud üliõpilane:
- kirjeldab elektroenergeetika põhivaldkondi ja peamisi arengusuundi;
- selgitab elektroenergeetika põhimõisteid ja valdkonna aktuaalseid probleeme;
- kirjeldab energia muundamise, edastamise ja salvestamise põhiviise;
- kasutab energeetikas kasutatavaid põhiühikuid ja nendevahelisi seoseid lihtsate ülesannete lahendamisel;
- kirjeldab taastuvate energiaallikate kasutusvõimalusi elektroenergeetikas;
- selgitab energiaseadmete keskkonnamõju ja selle vähendamise võimalusi;
- kasutab tehisintellekti võimalusi elektroenergeetika probleemide lahendamisel.
learning outcomes in the course in Eng.
After completing this course, the student:
- describes the main fields of electrical power engineering and the key development trends;
- explains the basic concepts of electrical power engineering and current issues in the field;
- describes the main methods of energy conversion, transmission and storage;
- uses the basic units of measurement used in energy engineering and their relationships to solve simple problems;
- describes the possibilities for using renewable energy sources in electrical power engineering;
- explains the environmental impact of energy equipment and ways to reduce it;
- uses artificial intelligence tools to solve problems in electrical power engineering.
brief description of the course in Estonian
Eesti elektroenergeetika ajalugu, praegused probleemid, tulevikukavad. Maailma energiaressursid. Maa energiabilanss, maailma maade energia- ja elektritarbimine. Primaarenergiavarud (üldmõisted, päikeseenergia, kütused, taastuvad biokütused, tuumaenergia, hüdroenergia, tuuleenergia, geotermaalenergia). Elektriinseneri kutse, töövaldkond ja tegevuse alused.
Elektroenergeetika põhimõisted. Elektrijaamad, soojuselektrijaamad (kondensatsioon-, koostootmis-, gaasturbiin-, tuumajaamad), taastuvad energialiigid ja nende kasutamine elektrienergia tootmisel, keskkonnakaitse, elektrienergia edastamine, võimsuse- ja energiakaod, elektrienergia kvaliteet, jaotlad ja peamised kõrgepingeaparaadid, energiasüsteem ja selle juhtimine, releekaitse ja automaatika, elektrienergia tarbimine, energiasääst.
Energia kasutamine (üldmõisted, mitteelektrilised kasutamisviisid, elektriajam, elektrotehnoloogia, elektervalgustus, elekterküte, energia tarbimise struktuur eri majandusharudes, majanduse energia- ja elektribilanss. Elektroenergeetika toime keskkonnale. Ohutustehnika elektriseadmetega töötamisel. Infopäringud ja tehisintellekt alusmaterjalide ressursside, hindade, saadavuse ja prognooside kontekstis.
brief description of the course in English
History of the Estonian power sector, current challenges and future plans. Global energy resources. The Earth’s energy balance; energy and electricity consumption in countries around the world. Primary energy resources (general concepts, solar energy, fuels, renewable biofuels, nuclear energy, hydropower, wind energy, geothermal energy). The electrical engineer’s profession, field of work and principles of professional practice.
Basic concepts of electrical power engineering. Power plants; thermal power plants (condensing, combined heat and power, gas turbine and nuclear power plants); renewable energy sources and their use for electricity generation; environmental protection; electricity transmission; power and energy losses; power quality; substations and main high-voltage equipment; the power system and its control; protection relays and automation; electricity consumption; energy efficiency.
Energy utilization (general concepts, non-electrical applications, electric drives, electrical technology, electric lighting, electric heating, the structure of energy consumption in different sectors of the economy, the energy and electricity balance of the economy). Environmental impact of electrical power engineering. Safety when working with electrical equipment. Information retrieval and artificial intelligence in the context of resources, prices, availability and forecasts of basic materials.
type of assessment in Estonian
Jooksev hindamine läbi semestri. Semestri lõpus kirjalik eksam kestusega 2 tundi.
type of assessment in English
Continuous assessment throughout the semester. A written examination lasting 2 hours at the end of the semester.
independent study in Estonian
Iseseisev töö seisneb teoreetiliste materjalide läbitöötamises ja ettevalmistuses eksamiks.
independent study in English
Independent work consists of study of theoretical materials and preparation for examination.
study literature
• Springer Handbook of Power Systems / Papailiou, Konstantin O. ; Papailiou, Konstantin O. ; 2021
• Electric Power Industry - A Nontechnical Guide / Miesner, Thomas O ; Gallo, A. Andrew ; 2022
• Electrical Power Engineering and Renewable Energy Technologies / Errouha, Mustapha ; Ouanjli, Najib El ; Motahhir, Saad ; 2023
• Risthein, E. Sissejuhatus energiatehnikasse. Elektriajam, Tallinn, 2007, 260 lk.
study forms and load
daytime study: weekly hours
4.0
session-based study work load (in a semester):
lectures
2.0
lectures
0.0
practices
2.0
practices
0.0
exercises
0.0
exercises
0.0
lecturer in charge
-
type (CBL/PBL)
not specified
LECTURER SYLLABUS INFO
semester of studies
teaching lecturer / unit
language of instruction
Extended syllabus
2026/2027 autumn
Ivo Palu, EE - Department of Electrical Power Engineering and Mechatronics
Estonian
    AEK0210 Fundamentals of Electrical Power Engineering.pdf 
    Course description in Estonian
    Course description in English