Higher education teachers: Slivnik Tomaž
Subject description
Prerequisits:
- Fundamentals of Electrical Engineering I,II
Content (Syllabus outline):
- Equations of electromagnetic fields (Maxwell equations in different forms, Boundary conditions, Conditions in infinity, absorbing boundary conditions).
- Formulations of electromagnetic problems.
- Numerical methods for electromagnetic problems (finite differences, finite elements, boundary elements, fast multipole methods, hybrid methods, other methods).
- Solution of systems of equations (decomposition methods, conjugate gradient method, iteration methods, eigenvalue problems).
Objectives and competences:
To learn numerical methods for computation of electromagnetic fields
Intended learning outcomes:
Students should compute parameters of chosen electromagnetic system
Learning and teaching methods:
Study materials
- Thomas Rylander, Par Ingellstrom, Anders Bondeson: Computational Electromagnetics, Springer, 2012
- Jiang-Ming Jin: Theory and Computation of Electromagnetic Fields,Wiley , 2010
- Yijun Liu; Fast Multipole Boundary Element Method, Cambridge UP, 2014
- Jean Van Bladel: Electromagnetic Fields, IEEE Press, 2007