Title :
Analytical methods of electromagnetic field theory in student study
Author :
Dmitrieva, I.Yu.
Author_Institution :
Odessa Nat. Acad. of Telecommun. (ONAT), Odessa, Ukraine
Abstract :
Here, it is proposed the short outline of the special master course on the directions related to radio engineering and telecommunications. The given topic concerns some more or less new analytical methods on the explicit solution and mathematical simulation of relevant problems in technical electrodynamics basing on the symmetrical differential Maxwell system. Those aforesaid techniques deal with the operator analogy of algebraic Gauss method and inverse matrix operator construction. The latter generates solvability criterion of the symmetrical inhomogeneous Maxwell system in terms of equivalence to the general wave PDE (partial differential equation) with respect to all unknown electromagnetic field intensities. The proven theorem allows formulating relevant boundary problems that describe mathematically wave propagation in the various media. Such problems are solved explicitly using the classical integral transform method. Advantages of present procedures are their simplicity in direct applications including arbitrary finite dimensional systems of PDEs and consideration of non generalized functions.
Keywords :
Maxwell equations; algebra; educational courses; electrical engineering education; electrodynamics; electromagnetic fields; partial differential equations; transforms; algebraic Gauss method; boundary problem; electrodynamics; electromagnetic field theory; finite dimensional system; general wave PDE; integral transform method; inverse matrix operator construction; partial differential equation; radio engineering; solvability criterion; special master course; student study; symmetrical differential Maxwell system; symmetrical inhomogeneous Maxwell system; telecommunication; wave propagation; Electrodynamics; Electromagnetic field theory; Mathematical model; Maxwell equations; Media; Symmetric matrices; Telecommunications; Electromagnetic field theory; Maxwell equations; differential form; general wave equation; vector field intensities;
Conference_Titel :
Antenna Theory and Techniques (ICATT), 2013 IX International Conference on
Conference_Location :
Odessa
Print_ISBN :
978-1-4799-2896-5
DOI :
10.1109/ICATT.2013.6650796