Subject description - XP17NME

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XP17NME Numerical Methods in Electromagnetic Field
Roles:S Extent of teaching:2P+2C
Department:13117 Language of teaching:CS
Guarantors:Macháč J. Completion:ZK
Lecturers:Macháč J. Credits:4
Tutors:Macháč J. Semester:L

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Poissonous, Helmoholtz and wave equations. Analytical, semianalytical, seminumerical and numerical methods. Matrix equations and algorithms: Mode Matching Technique, Point Matching Method, Method of Moments, Multiple MultiPoles, Boundary Element Method, Finite Difference Method, Finite Element Method, Finite Integration Method. Stability of solution. Solution of matrix equations: direct methods, Gauss-JordanOs elimination, pivotation, LU-decomposition, banded and sparse matrix, conjugate-gradient method.

Course outlines:

Exercises outline:


1. J.L.Volakis,A.Chatterjee and L.C.Kempel: Finite Element Method for Electromagnetics,IEEE Press: New York,1998, 2.G.Conciauro,M.Guglielmi,R.Sorrentino: Advanced Modal Analysis,John Wiley and Sons,Chichester,2000



numerical methods, CAD

Subject is included into these academic programs:

Program Branch Role Recommended semester
DOKP Common courses S
DOKK Common courses S

Page updated 17.6.2024 17:52:15, semester: Z/2024-5, Z,L/2023-4, Send comments about the content to the Administrators of the Academic Programs Proposal and Realization: I. Halaška (K336), J. Novák (K336)