Electromagnetic Influences

Објавено: July 10, 2023
1. Course Title Electromagnetic Influences
2. Code 4ФЕИТ06002
3. Study program 14-ESOR
4. Organizer of the study program (unit, institute, department) Faculty of Electrical Engineering and Information Technologies
5. Degree (first, second, third cycle) Second cycle
6. Academic year/semester I/1   7.    Number of ECTS credits 6.00
8. Lecturer Dr Blagoja Markovski
9. Course Prerequisites  
10. Course Goals (acquired competencies):

Recognition and understanding of the influences of electromagnetic fields on the environment. Analysis of electromagnetic phenomena and optimal application of protection measures.

11. Course Syllabus:

A brief summary of electromagnetic theory. Sources of electromagnetic fields and their position in the electromagnetic spectrum, with special emphasis on electric power lines and installations, radio transmitters, atmospheric discharges as sources of electromagnetic influence that are of particular interest.  Mechanisms of interaction of electromagnetic fields with surrounding systems and the environment (conductive, capacitive and inductive coupling, electromagnetic induction, radiation).  Effects of the exposure of equipment (elevated potentials, interference, corrosion) and people (touch and step voltages, contact currents, induced currents, tissue heating) to electromagnetic fields.  Computer tools for modeling electromagnetic phenomena.  Measures to reduce the effects of electromagnetic influences.  Аpplication of acquired knowledge in safety assessment and protection of people and equipment from electromagnetic influences in practical situations and writing a technical report.

12. Learning methods:

Lectures with presentations; interactive lectures; teamwork and independent work; case study; independent preparation and defense of a project assignment in the form of a seminar paper or a research paper; interactive discussions

13. Total number of course hours 180
14. Distribution of course hours 3 + 3
15. Forms of teaching 15.1 Lectures-theoretical teaching 45 hours
15.2 Exercises (laboratory, practice classes), seminars, teamwork 0 hours
16. Other course activities 16.1 Projects, seminar papers 45 hours
16.2 Individual tasks 0 hours
16.3 Homework and self-learning 90 hours
17. Grading
17.1 Exams 30 points
17.2 Seminar work/project (presentation: written and oral) 50 points
17.3. Activity and participation 20 points
17.4. Final exam 0 points
18. Grading criteria (points) up to 50 points 5 (five) (F)
from 51 to 60 points 6 (six) (E)
from 61 to 70 points 7 (seven) (D)
from 71 to 80 points 8 (eight) (C)
from 81 to 90 points 9 (nine) (B)
from 91 to 100 points 10 (ten) (A)
19. Conditions for acquiring teacher’s signature and for taking final exam Completion of project assignment.
20. Forms of assessment Presentation of project assignment.
21. Language Macedonian and English
22. Method of monitoring of teaching quality Self-evaluation
23. Literature
23.1.       Required Literature
No. Author Title Publisher Year
1. L. Felsen Transient Electromagnetic Fields Spinger, N.Y. 1976
2. F.M. Tesche, M.V. Ianoz, T. Karlsson EMC analysis and computational models Wiley, N.Y. 1997
3. C. Paul Introduction to electromagnetic compatibility Wiley, N.Y. 2004
23.2.       Additional Literature
No. Author Title Publisher Year
1.    Standards that are relevant to the specific area of research