Applied Computational Electromagnetics: State of the Art and by Nikolaos K. Uzunoglu (auth.), Nikolaos K. Uzunoglu,

By Nikolaos K. Uzunoglu (auth.), Nikolaos K. Uzunoglu, Konstantina S. Nikita, Dimitra I. Kaklamani (eds.)

@EOI: AEI rEOMETPEI Epigram of the Academy of Plato in Athens Electromagnetism, the technological know-how of forces bobbing up from Amber (HAEKTPON) and the stone of Magnesia (MArNHLIA), has been the fOWldation of significant medical breakthroughs, akin to Quantum Mechanics and thought of Relativity, in addition to so much cutting edge applied sciences of the 20 th century. The accuracy of electromagnetic fields computations for engineering reasons has been considerably superior over the past many years, because of the improvement of effective computational suggestions and the supply of excessive functionality computing. the current publication is predicated at the contributions and discussions built in the course of the NATO complex learn Institute on utilized Computational Electromagnetics: state-of-the-art and destiny developments, which has taken position in Hellas, at the island of Samos, very as regards to the birthplace of Electromagnetism. The e-book covers the elemental options, contemporary advancements and complicated functions of fundamental Equation and Metliod of Moments thoughts, Finite aspect and BOWldary aspect equipment, Finite distinction Time area and Transmission Line tools. additionally, themes relating to Computational Electromagnetics, equivalent to Inverse Scattering, Semi-Analytical tools and Parallel Processing innovations are incorporated. The collective presentation of the critical computational electromagnetics ideas, constructed to address varied difficult innovative expertise difficulties, is predicted to be important to researchers and postgraduate scholars operating in a number of subject matters of electromagnetic technologies.

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K. Uzunoglu, "Radiation from an Annular Slot Antenna Covered by a Dielectric Cylinder of Finite Height," J. Electro. , vol. 8, pp. 19-41, 1994. [16] R. T. D. dissertation, Ohio State University, Columbus, 1964. [17] R. Zoughi and S. Bachtiari, "Microwave nondestructive detection and evalution of disbonding and delamination in layered dielectric slabs," IEEE Trans. Instrum. , vol. 39, pp. 157-168, Dec. 1990. [18] V. Teodoridis, T. Sphicopoulos and F. Gardiol, "The reflection from an openended rectangular waveguide terminated by a layered dielectric medium," IEEE Trans.

Then, according to [1], an auxiliary surface a is introduced inside area D and on this surface is uniformly distributed a set of the points rn{xn,Yn,Zn}:=1 Ea. Let {un(lrn-rl)tl be the Helmholtz equation's fundamental solutions by which the SF is to be represented. -i'1 U(lrn-rl)=e _ _ ,3-D Irn -r I where Ir" -r I=~(xn _x)2 +(yn _y)2 +(zn _z)2; (4) M(xn'Ywzn) EO'; It has been proved by V. Kupradze [1] that: a) The system of functions {U(I rn - r I) };=l - the fundamental solutions of Helmholtz equation, which describe the characteristics of the field (electric or magnetic field or field's potentials) is complete and linearly independent on the surface S in L2 space.

Electro. , vol. 13, pp. 1191-1192, 1999. [7] D. I. Kaklamani, C. Capsalis and N. K. Uzunoglu, "Radiation from a Monopole Antenna Covered by a Finite Height Dielectric Cylinder," Electromagnetics, vol. 12, pp. 185-216, 1992. 32 [8] W. C. Chew and J. A. Kong, "Analysis of a Circular Microstrip Disc Antenna with Thick Dielectric Substrate," IEEE Trans. , vol. 29, pp. 68-76,1981. [9] N. K. , 1981. [10] T. E. Rozzi, "Rigorous Analysis of the Step Discontinuities in Planar Dielectric Waveguides," IEEE Trans.

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