1. Course Title | Power System Basics | |||||||
2. Code | 4ФЕИТ09З015 | |||||||
3. Study program | ТКИИ,КТИ | |||||||
4. Organizer of the study program (unit, institute, department) | Faculty of Electrical Engineering and Information Technologies | |||||||
5. Degree (first, second, third cycle) | First cycle | |||||||
6. Academic year/semester | II/3 | 7. Number of ECTS credits | 6 | |||||
8. Lecturer | D-r Aleksandra Krkoleva Mateska | |||||||
9. Course Prerequisites |
Passed: Fundamentals of Electrical Engineering Taken course: Fundamentals of Electric Circuits |
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10. Course Goals (acquired competencies): This objective of the course is to gain competences related to the principles of development and the operation of power systems. The students will be capable of understanding the principles of transmission, distribution and supply of electricity in contemporary power systems. | ||||||||
11. Course Syllabus: Terms and definitions in power systems. The power system of the Republic of North Macedonia: actors, roles. The general characteristics of power generation, transmission and distribution systems. Fundamental principles of power systems. Direct and alternative current systems. Three-phase power systems. Power and energy. Electricity consumption and use. Elements of power systems. Modelling of the elements of power systems. Voltage drop and power losses in power system elements. Power flow in power systems. Low voltage grids and installations. Transformation of the contemporary power systems – new opportunities to use information and communication technologies in power systems. Smart grids, smart house. | ||||||||
12. Learning methods: Lectures, exercises and course assignments | ||||||||
13. Total number of course hours | 3 + 2 + 0 + 0 | |||||||
14. Distribution of course hours | 180 | |||||||
15. Forms of teaching | 15.1. Lectures-theoretical teaching | 45 | ||||||
15.2. Exercises (laboratory, practice classes), seminars, teamwork | 30 | |||||||
16. Other course activities | 16.1. Projects, seminar papers | 30 | ||||||
16.2. Individual tasks | 30 | |||||||
16.3. Homework and self-learning | 45 | |||||||
17. Grading | 17.1. Exams | 0 | ||||||
17.2. Seminar work/project (presentation: written and oral) | 20 | |||||||
17.3. Activity and participation | 10 | |||||||
17.4. Final exam | 70 | |||||||
18. Grading criteria (points) | up to 50 points | 5 (five) (F) | ||||||
from 51to 60 points | 6 (six) (E) | |||||||
from 61to 70 points | 7 (seven) (D) | |||||||
from 71to 80 points | 8 (eight) (C) | |||||||
from 81to 90 points | 9 (nine) (B) | |||||||
from 91to 100 points | 10 (ten) (A) | |||||||
19. Conditions for acquiring teacher’s signature and for taking final exam | Regular attendance of lectures and exercises | |||||||
20. Forms of assessment | Two mid/end-term exams (120 min each), or a final exam (120 min) are organized. The student is obligated to complete and submit the required homework assignments and projects, according to the schedule published at the course web site. The exam consists of a set of theory background questions and several exam assignments. The final mark is determined from the weighted average of scores from exams, homework, and project assignments. During the exams it is not allowed to use any literature in printed or electronic form. Calculators are allowed, but not mobile phones, tablets or similar electronic devices. |
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21. Language | Macedonian and English | |||||||
22. Method of monitoring of teaching quality | Internal evaluation and polls | |||||||
23. Literature | ||||||||
23.1. Required Literature | ||||||||
No. | Author | Title | Publisher | Year | ||||
1 | A. von Meier | Electric Power Systems | IEEE Press, John Wiley & Sons | 2007 | ||||
2 | V. Strezoski | Power System Basics | Faculty of Technical Sciences – Novi Sad | 2019 | ||||
3 | R. Ackovski | Transmission and Distribution Systems | ETF – Skopje | 1995 | ||||
23.2. Additional Literature | ||||||||
No. | Author | Title | Publisher | Year | ||||
1 | S. W. Blume | Electric Power System Basics | IEEE Press, John Wiley & Sons | 2007 | ||||
2 | Р. Ачковски, М. Тодоровски | Збирка задачи од областа на преносните и дистрибутивни системи | ФЕИТ – Скопје | 2007 |