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High-voltage engineering (5 cr)

Code: ST00BH24-3015

General information


Enrollment
04.11.2024 - 17.11.2024
Registration for the implementation has ended.
Timing
01.01.2025 - 01.05.2025
Implementation is running.
Number of ECTS credits allocated
5 cr
Local portion
5 cr
Mode of delivery
Contact learning
Unit
Department of Electrical Engineering, Building Services and Material Technology
Campus
Mikkeli Campus
Teaching languages
Finnish
Seats
20 - 30
Degree programmes
Degree Programme in Electrical and Automation Engineering
Teachers
Tarmo Makkonen
Teacher in charge
Tarmo Makkonen
Groups
STMI22SPA
Electrical and Automation Engineering, full-time studies
STMI22SPB
Electrical and Automation Engineering, full-time studies
Course
ST00BH24

Realization has 14 reservations. Total duration of reservations is 42 h 0 min.

Time Topic Location
Fri 17.01.2025 time 10:00 - 13:00
(3 h 0 min)
Suurjännitetekniikka ST00BH24-3015
E313 Tietokoneluokka (sähkö ja talotekn. syksy -25-)
Fri 24.01.2025 time 08:30 - 11:30
(3 h 0 min)
Suurjännitetekniikka ST00BH24-3015
Etäopetus lukujärjestyksen mukaan
Fri 31.01.2025 time 10:00 - 13:00
(3 h 0 min)
Suurjännitetekniikka ST00BH24-3015
Etäopetus lukujärjestyksen mukaan
Fri 07.02.2025 time 08:30 - 11:30
(3 h 0 min)
Suurjännitetekniikka ST00BH24-3015
Etäopetus lukujärjestyksen mukaan
Fri 14.02.2025 time 08:30 - 11:30
(3 h 0 min)
Suurjännitetekniikka ST00BH24-3015
Etäopetus lukujärjestyksen mukaan
Fri 21.02.2025 time 08:30 - 11:30
(3 h 0 min)
Suurjännitetekniikka ST00BH24-3015
Etäopetus lukujärjestyksen mukaan
Fri 07.03.2025 time 08:15 - 11:15
(3 h 0 min)
Suurjännitetekniikka ST00BH24-3015
E313 Tietokoneluokka (sähkö ja talotekn. syksy -25-)
Fri 14.03.2025 time 08:15 - 11:15
(3 h 0 min)
Suurjännitetekniikka ST00BH24-3015
Etäopetus lukujärjestyksen mukaan
Fri 21.03.2025 time 10:00 - 13:00
(3 h 0 min)
Suurjännitetekniikka ST00BH24-3015
E313 Tietokoneluokka (sähkö ja talotekn. syksy -25-)
Mon 24.03.2025 time 10:00 - 13:00
(3 h 0 min)
Suurjännitetekniikka ST00BH24-3015
Etäopetus lukujärjestyksen mukaan
Thu 03.04.2025 time 09:00 - 12:00
(3 h 0 min)
Suurjännitetekniikka ST00BH24-3015
Etäopetus lukujärjestyksen mukaan
Thu 10.04.2025 time 09:00 - 12:00
(3 h 0 min)
Suurjännitetekniikka ST00BH24-3015
E313 Tietokoneluokka (sähkö ja talotekn. syksy -25-)
Thu 17.04.2025 time 09:00 - 12:00
(3 h 0 min)
Suurjännitetekniikka ST00BH24-3015
E313 Tietokoneluokka (sähkö ja talotekn. syksy -25-)
Thu 24.04.2025 time 08:15 - 11:15
(3 h 0 min)
Suurjännitetekniikka ST00BH24-3015
E313 Tietokoneluokka (sähkö ja talotekn. syksy -25-)
Changes to reservations may be possible.

Objective

You show familiarity with high-voltage technology and its basic concepts. You understand the main methods used in high-voltage technology and know the main high-voltage engineering components.

Content

What are electrical discharges and insulation structures?
What are different types of insulation, insulation condition management, electrical surges, insulation coordination, testing and measuring technology?

Course material

High voltage technology; Otatieto publication 568. Martti Aro, Jarmo Elovaara, Matti Karttunen, Kirsi Nousiainen, Veikko Palva
Power System Analysis: Grainger, Stevenson
History of Electrical Engineering; Ismo Lindell. Otatieto publication 552.
Materials shared in lessons and Learn.

Study forms and methods

Lessons and calculation exercises as contact teaching
Homework and electronic intermediate tests in the Learn-platform
Laboratory exercise in Kuopio, Savonia
Company visits
It is also possible to complete the course by applying for recognition of competence by presenting a substitute course credit.

RDI and work-related cooperation

no

Timing of exams and assignments

Laboratory exercises in Kuopio, Savonia.
Electronic intermediate tests on different subject areas.

Student workload

One credit corresponds to 27.5 hours of student workload.
However, the amount of work depends on the study methods and from previous competence.

Course part description

High voltage technology and its development
The tensile strength of insulation structures
Overvoltage stresses in the network
Surge protection and insulation coordination
High voltage testing and measurement technology

Evaluation scale

1-5

Assessment methods and criteria

Affect the grade:
Participation in lessons and exercises
The total score of electronic intermediate tests
Participation in high-voltage laboratory work and an approved laboratory report

Qualifications

Basic engineering physics and chemistry

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