Power System Operation
BASIC DATA
course listing
A - main register
course code
AEK0230
course title in Estonian
Energiasüsteemid
course title in English
Power System Operation
course volume CP
4.00
ECTS credits
6.00
to be declared
yes
fully online course
not
assessment form
Examination
teaching semester
autumn - spring
language of instruction
Estonian
English
Study programmes that contain the course
code of the study programme version
course compulsory
EAAB16/25
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
- Tutvustada energiasüsteeme, energiasüsteemide talitluse analüüsi ja optimaaljuhtimise üldisi põhimõtteid.
- Tutvustada sageduse ja aktiivvõimsuste reguleerimise meetodeid energiasüsteemides.
- Tutvustada energiasüsteemide töö- ja häiringukindluse hindamise teoreetilisi aluseid ja energia julgeoleku suurendamise võimalusi.
- Tutvustada elektrituru olemust, turuosalisi ning toimimise mehhanisme
- Tutvustada energiamajanduse põhimõisteid ja energeetika planeerimise probleeme.
komponente ning nende sisendeid, väljundeid ja olekumuutujaid.
course aims in English
- Acquaint students with composition and functions of electric power systems and interconnected electric power systems.
- Explain objectives and operation requirements of electric power systems.
- Introduce components of power systems, their inputs, outputs and state parameters.
- Introduce the electricity market, the market rules and the market participants.
- Intoduce the principles of energy economy.
learning outcomes in the course in Est.
Üliõpilane :
- teab energiasüsteemide eripära sellisel määral, et oskab analüüsida erinevate elektrijaamade koostööd energiasüsteemis;
- analüüsib energiasüsteemi püsitalitluse juhtimisprotsessi ja hindab selle optimaalsust;
- tunneb töö- ja häiringukindluse aluseid, olulisi näitajaid ja kriteeriume ning oskab neid arvutada;
- tunneb põhilisi energiasüsteemide probleeme ja oskab anda üldisi soovitusi nende lahendamiseks;
- mõistab elektrituru ja energiamajanduse olemust ja eripära ning oskab selgitada bilansi hoidmise põhimõtteid.
learning outcomes in the course in Eng.
Student:
- knows the specifics of power systems, can analyze the structures of power system;
- knows the models of power system components and can compose the power system operation models;
- knows the frequency and active power control methods in power systems. - Knows the possibilities of power generation optimization and control;
- knows the power system reliability and security estimation problem and can to calculate the reliability and security indicators;
- knows the objectives and problem of power systems planning;
- knows the princeples of operation of open electricity market.
brief description of the course in Estonian
Energiasüsteemide ajaloost. Maailma energeetika olukord ja arengu põhisuunad. Energiavajadus tänapäeva ühiskonnas, selle katkematuse kriitilisus. Energiasüsteemide arendamise ühiskondlikud väljakutsed, sotsiaalsed ja eetilised kaalutlused. Õiguslikud aspektid. Eritüübiliste elektrijaamade sobivus energiasüsteemi ja elektrisüsteemi stabiilsus. Energiatootjate valik ja keskkonnakaitse, geograafilised piirangud ja eripärad. Ühendenergiasüsteemid. Eritüübiliste elektrijaamade sobivus energiasüsteemi. Energiasüsteemi elementide ja püsitalitluse mudelid. Sageduse ja aktiivvõimsuste reguleerimine energiasüsteemides ning ühendenergiasüsteemides. Reservid ja elektrienergia genereerimise optimeerimise võimalused. Energiasüsteemi töö- ja häiringukindluse aluspõhimõtted. Töökindluse hindamise näitajad ja nende arvutamine. Energiasüsteemide arengu planeerimise ülesanded. Energiamajanduse alused. Avatud elektrituru olemus. Turuosalised. Elektribörs.
brief description of the course in English
A brief history of power systems. World energy, development directions. Power systems and interconnected power systems, their functions, structure and requirements. Suitability of power plants to the power system. Models of power systems components. Power system operation. Frequency and active power control in power systems and interconnected power systems. Reserves. Optimization of generation in power systems. Reliability and security of power systems. Reliability evaluation methods. The problems of power systems development planning. Electricity market. Market participants. Electricity market rules.
type of assessment in Estonian
Semestri vältel on 1-2 kontrolltööd ja kogu kursust hõlmav kodutöö. Nende positiivne sooritamine on eksamile saamise eelduseks. Eksamil 2 ülesannet ja 3 teoreetilist küsimust. Eksam on kirjalik, kestvus 2 tundi.
type of assessment in English
In a semester: 1-2 tests and 1 home-work. The preconditions to the examination are passing the tests and home-work. Examination in written form, 5 questions or tasks.
independent study in Estonian
Ülesannete lahendamine, kodutöö koostamine, ettevalmistumine kontrolltöödeks ja eksamiks.
independent study in English
Solving of problems, homework composing, learning for tests and examination.
study literature
- Lin, Kyaw Myo Power System Operation and Control; Publisher Trans Tech Publications; Copyright / Publication Date 2024.
- Patrick, Dale R ; Fardo, Stephen W; Fardo, Brian W; Fardo, Stephen W; Fardo, Brian W; Electrical Power Systems Technology; United Kingdom: River Publishers 2022.
study forms and load
daytime study: weekly hours
4.0
session-based study work load (in a semester):
lectures
1.0
lectures
0.0
practices
3.0
practices
0.0
exercises
0.0
exercises
0.0
lecturer in charge
-
LECTURER SYLLABUS INFO
semester of studies
teaching lecturer / unit
language of instruction
Extended syllabus
2025/2026 spring
Ivo Palu, EE - Department of Electrical Power Engineering and Mechatronics
Estonian
    AEK0230 Power System Operation.pdf 
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    2024/2025 spring
    Ivo Palu, EE - Department of Electrical Power Engineering and Mechatronics
    Estonian
      AEK0230 Power System Operation.pdf 
      2023/2024 spring
      Reeli Kuhi-Thalfeldt, EE - Department of Electrical Power Engineering and Mechatronics
      Estonian
        2022/2023 spring
        Reeli Kuhi-Thalfeldt, EE - Department of Electrical Power Engineering and Mechatronics
        Estonian
          2021/2022 spring
          Reeli Kuhi-Thalfeldt, EE - Department of Electrical Power Engineering and Mechatronics
          Estonian
            AEK0230 Power System Operation.pdf 
            2020/2021 spring
            Jelena Šuvalova, EE - Department of Electrical Power Engineering and Mechatronics
            Estonian
              AEK0230 Power System Operation.pdf 
              2019/2020 spring
              Jelena Šuvalova, EE - Department of Electrical Power Engineering and Mechatronics
              Estonian
                AEK0230 Power System Operation.pdf 
                2018/2019 spring
                Jelena Šuvalova, EE - Department of Electrical Power Engineering and Mechatronics
                Estonian
                  AEK0230 Power System Operation.pdf 
                  Course description in Estonian
                  Course description in English