1. Course Title | Power Systems Measurements | |||||||
2. Code | 4ФЕИТ03Л005 | |||||||
3. Study program | ЕАОИЕ,ЕЕС | |||||||
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 | III/6 | 7. Number of ECTS credits | 6 | |||||
8. Lecturer | D-r Vladimir Dimchev | |||||||
9. Course Prerequisites | Passed: Fundamentals of Electrical Engineering, Electrical Measurements | |||||||
10. Course Goals (acquired competencies): The students are learning specific measurement methods and instrumentation which are used in power systems measurements. | ||||||||
11. Course Syllabus: The content of the course is following. Introduction in instrument transformers. Voltage and current measurement transformers, application and measurement errors. Methods for measurement of one phase and three phase electric power. Types and construction of power-meters. Measurement of electrical energy, digital electricity meters, communication possibilities and parameterization. Measurement of grounding grids resistance, touch and step voltages and earth specific resistivity. Measurement of electric isolation. Power quality measurements. |
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12. Learning methods: Lectures, numerical and laboratory exercises, project tasks, self-study. | ||||||||
13. Total number of course hours | 3 + 1 + 1 + 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 | 10 | ||||||
17.2. Seminar work/project (presentation: written and oral) | 10 | |||||||
17.3. Activity and participation | 10 | |||||||
17.4. Final exam | 60 | |||||||
18. Grading criteria (points) | up to 54 points | 5 (five) (F) | ||||||
from 55to 63 points | 6 (six) (E) | |||||||
from 64to 72 points | 7 (seven) (D) | |||||||
from 73to 81 points | 8 (eight) (C) | |||||||
from 82to 90 points | 9 (nine) (B) | |||||||
from 91to 100 points | 10 (ten) (A) | |||||||
19. Conditions for acquiring teacher’s signature and for taking final exam | Made and defended laboratory exercises. | |||||||
20. Forms of assessment | Two partial written exams are scheduled (at the middle and at the end of the semester, each with duration of 120 minutes), tests that are conducted during the classes, as well as project assignments, which are presented/defended during the semester. 1. Students who have passed the partial exams are considered to have passed the final written exam. The final grade is formed based on the points from the partial written exams, the tests, and the project assignments. 2. In the planned exam sessions, a final written exam is taken (lasting 120 minutes). The final grade is formed based on the points from the final written exam, the tests, and the project assignments. |
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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 | Vladimir Dimchev | Power Systems Measurements | Internal sript FEEIT | 20 | ||||
2 | V. Dimchev, K. Demerdziev | Numerical exercises for power systems measurements | Internal script FEEIT | 18 | ||||
3 | V. Dimchev, K. Demerdziev | Laboratory Practicum | FEEIT | 18 | ||||
23.1. Required Literature | ||||||||
No. | Author | Title | Publisher | Year | ||||
23.2. Additional Literature | ||||||||
No. | Author | Title | Publisher | Year | ||||
1 | L. Schnell | Technology of electrical measurements | Wiley&Sons | 93 | ||||
2 | K. Iwasson | Measuring current, voltage and power | Elsevier | 99 |