Pulsed EM Field Computation in Planar Circuits - Martin Stumpf

Pulsed EM Field Computation in Planar Circuits

The Contour Integral Method

(Autor)

Buch | Hardcover
244 Seiten
2018
CRC Press (Verlag)
978-1-138-73524-8 (ISBN)
189,95 inkl. MwSt
The book presents a unique and comprehensive account of the time-domain contour-integral method and its applications in the pulsed EM-field characterization of planar circuits. The fundamental time-domain reciprocity theorem, the book provides step-by-step derivations of integral formulations.
The pulsed EM characterization of planar circuits is of high practical importance in many areas of science and engineering such as electromagnetic compatibility and antenna design. This book is hence devoted to the mathematical formulation and numerical analysis of arbitrarily-shaped parallel-plane structures concerning their pulsed EM propagation, radiation and scattering behavior. The key emphasis is on the time-domain reciprocity-based integral-equation formulations and their efficient numerical solution.

Martin Stumpf

Introduction. Basic formulation. Instantaneously-reacting planar circuits. Relation to the classic CIM. Rectangular planar circuits with relaxation. Arbitrarily-shaped planar circuits with radiation loss and relaxation. Inclusion of linear lumped elements. Far-field radiation characteristics. Time-domain mutual coupling between planar circuits 81. Time-domain self-reciprocity of a one-port planar circuit. Th´evenin’s circuit of an N-port planar circuit. Time-domain radiated susceptibility of a planar circuit. Scattering reciprocity properties of an N-port planar circuit. Scattering of conductive and dielectric inclusions. The time-domain compensation contour integral method. Modeling of shorting via structures. A Integrals of the logarithmic function. B Implementation of TD-CIM. C Implementation of FD-CIM. D Implementation of the admittance-wall boundary condition. E Implementation of lumped-element arrays. F The bell-shaped pulse. G Expansion functions. H Green’s function of the dissipative scalar 2D wave equation. I Numerical inversion of the Laplace transformation. J Green’s function of the scalar 2D wave equation with relaxation. References. Index.

Erscheinungsdatum
Zusatzinfo 1 Tables, black and white; 4 Illustrations, color; 92 Illustrations, black and white
Verlagsort London
Sprache englisch
Maße 156 x 234 mm
Gewicht 576 g
Themenwelt Technik Elektrotechnik / Energietechnik
Technik Nachrichtentechnik
Technik Umwelttechnik / Biotechnologie
ISBN-10 1-138-73524-8 / 1138735248
ISBN-13 978-1-138-73524-8 / 9781138735248
Zustand Neuware
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