Basics of electric power engineerig (5 cr)
Code: TSASS300-3001
General information
- Enrollment
-
03.08.2020 - 30.08.2020
Registration for the implementation has ended.
- Timing
-
31.08.2020 - 31.12.2020
Implementation has ended.
- Number of ECTS credits allocated
- 5 cr
- Local portion
- 5 cr
- Mode of delivery
- Face-to-face
- Unit
- School of Technology
- Campus
- Main Campus
- Teaching languages
- Finnish
- Seats
- 10 - 30
- Degree programmes
- Bachelor's Degree Programme in Electrical and Automation Engineering
- Teachers
- Ari Latvala
- Vesa Hytönen
- Groups
-
TSA19SBBachelor's Degree Programme in Electrical and Automation Engineering
-
TSA19S1Sähkö- ja automaatiotekniikka
- Course
- TSASS300
Evaluation scale
0-5
Content scheduling
Kertaus sähkötekniikan perusteista
Symmetrinen ja epäsymmetrinen 3-vaihejärjestelmä
Vaihtosähköpiirien tehosuureet
Muuntajat
Sähkömoottorit
Laboratoriotyöt
Seminaariesitykset
Välikoe 1
Virran, jännitteen, tehon ja energian mittaaminen
Kiinteistön sähköverkot
Loistehon kompensointi
Yliaallot ja sähkön laatu
Valaistustekniikka
Laboratoriotyöt
Seminaariesitykset
Välikoe 2
Objective
The students understand the basic calculation of coupled three-phase circuits, and they know the various power concepts. They understand the effect of reactive power and harmonics on an electric power system. They know how to measure the basic quantities of an electric power system. They also know the measurements related to the quality of supply. They have a basic understanding of the various areas of electrical power engineering.
TSAST – Electrotechnical and other basic competence
The student is able to apply mathematical methods and tools to describe the phenomena of the field and to solve problems.
YHTVI – Communication skills
The student is able to communicate well, both orally and in writing in their mother tongue.
EA-KN: Knowledge and understanding
The student has a systematic understanding of the key aspects and concepts of their branch of engineering.
EA-IV: Investigations
The student has the ability to conduct literature searches and use databases and other sources of information.
Content
Symmetric and asymmetric three-phase system
Voltage reduction
Harmonics theory
Transient
Electrostatics and current flow
Compensation
Measurement of current, voltage and power in an electric power system, energy measurement
Measurements related to the quality of supply
Electromechanics: electric machines and transformers
Power plant and lighting engineering
Electric drives and power electronics
Power generation plants at a general level
Materials
Ahoranta J. 2017. Sähkötekniikka. E-kirja/kirja. Sanoma Pro Oy. Viitattu 13.4.2020. https://www.ellibslibrary.com/book/978-952-63-0101-3
Teaching methods
Sähkövoimatekniikka on luonnostaan ongelmalähtöistä ja siksi sitä käytetään myös oppimismenetelmänä. Konkreettisesti se tapahtuu kontaktituntien, laskuharjoitusten, virtuaalitehtävien ja laboratoriotöiden kautta. Oppimistehtävien suorittaminen toteutetaan pääasiassa itsenäisesti, mutta ohjausta toteutetaan kontaktituntien aikana ja video-ohjeistusten välityksellä.
Exam schedules
Kaksi välikoetta (syksy 2020)
Lähitentti uusinta 1 (syksy 2020)
EXAM-tentti uusinta 2 (kevät 2020)
Student workload
Kontaktitunnit 48 h, itsenäinen työskentely 87 h, yhteensä 135 h oppimistyötä.
Assessment criteria, satisfactory (1)
Excellent (5): The student masters the essential knowledge and can apply the knowledge acquired in a creative and innovative manner.
Very good (4): The student masters the essential knowledge and can apply the knowledge.
Good (3): The student:
- understands the basic calculation of coupled three-phase circuits, and they know the various power concepts.
- understands the effect of reactive power and harmonics on an electric power system.
- knows how to measure the basic quantities of an electric power system.
Satisfactory (2): The student is familiar with the basic knowledge and terminology but in the application of the essential concepts the skills are still inadequate.
Adequate (1): The student identifies the basic knowledge and terminology but in the interpreting of the essential concepts the skills are still inadequate.
Qualifications
Basics in electrical engineering
Further information
Itsearvioinnit tehdään pääosin oppimistehtävien avulla. Arviointipäätös pohjautuu tentissä/välikokeissa osoitettuun osaamiseen.
Avoin AMK 5