000 03801nam a2200361za04500
001 17290
008 050703s2011 xxu eng d
020 _a9781441978509 99781441978509
082 _a621.3
_b223
100 _aNesterenko, Mikhail V.
_eauthor.
_936017
245 _aThin Impedance Vibrators
_h[electronic resource]:
_bTheory and Applications /
_cby Mikhail V. Nesterenko, Victor A. Katrich, Yuriy M. Penkin, Victor M. Dakhov, Sergey L. Berdnik.
300 _aXIII, 223p. 118 illus., 1 illus. in color.
_bonline resource.
490 _aLecture Notes in Electrical Engineering
490 _x-1876-1100 ;
_v-95
505 _aPreface -- General Questions of the Theory of Impedance Vibrators in the Spatial-Frequency Representation -- Electromagnetic Waves Radiation by Impedance Vibrators in Free Space and Material Mediums -- Electromagnetic Waves Radiation by Impedance Vibrators in Material Mediums over the Perfectly Conducting Plane -- Electromagnetic Waves Scattering by Irregular Impedance Vibrators in Free Space -- Generalized Method of the Induced EMF for Investigation of the Characteristics of Impedance Vibrators -- Electromagnetic Waves Radiation by Radial Impedance Vibrators on the Perfectly Conducting Sphere -- Electromagnetic Waves Scattering by Impedance Vibrators in the Rectangular Waveguide -- Conclusion -- Appendices.
520 _aThin Impedance Vibrators: Theory and Applications is devoted to exploring the foundations of the theory of thin impedance vibrator antennas. The text provides a continuation of the classic theory of thin perfectly conducting vibrators.รก Many consider impedance conception one of the most universal models in the theory of wave processes, as it informs such a wide spectrum of uses in solving practical problems of electrodynamics. This topic provides an opportunity to further search analytical solutions, allowing a simplification of the mathematical formulation of the boundary problem. The theory strives to widen the boundaries of the impedance vibrator antennas application in complex modern radio-and-electronic systems and devices. The book is intended for practicing engineers and designers of antenna and waveguide systems. It can be used to teach students about radiotechnical and radiophysical specialties. The conclusion of the book lists many actual applied problems, which can provide inspiration for several potential PhD projects. Topics covered are: general questions of the theory of impedance vibrators in the spatial-frequency representation electromagnetic waves radiation by impedance vibrators in free space and material mediums electromagnetic waves radiation by impedance vibrators in material mediums over the perfectly conducting plane electromagnetic waves scattering by irregular impedance vibrators in free space generalized method of induced electromotive forces for investigation of the characteristics of impedance vibrators radiation of electromagnetic waves by radial impedance vibrators on the perfectly conducting sphere electromagnetic waves scattering by impedance vibrators in the rectangular waveguide
650 _aEngineering.
_996
650 _aEngineering.
_996
650 _934013
_aMICROWAVES
650 _934591
_aOPTICS AND ELECTRODYNAMICS
650 _933628
_aMICROWAVES, RF AND OPTICAL ENGINEERING
700 _aKatrich, Victor A.
_936018
700 _eauthor.
_936019
700 _aPenkin, Yuriy M.
_936020
700 _eauthor.
_936019
700 _aDakhov, Victor M.
_936021
700 _eauthor.
_936019
700 _aBerdnik, Sergey L.
_936022
700 _eauthor.
_936019
710 _aSpringerLink (Online service)
_9111
856 _uhttp://springer.escuelaing.metaproxy.org/book/10.1007/978-1-4419-7850-9
_yir a documento
_qURL
942 _2ddc
_cCF
999 _c13915
_d13915