Mikhail V. Nesterenko – författare
Thin Impedance Vibrators
Theory and Applications
1 082 kr
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1 416 kr
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Thin Impedance Vibrators
Theory and Applications
1 082 kr
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Electromagnetic Fields Excited in Volumes with Spherical Boundaries
1 512 kr
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Combined Vibrator-Slot Structures: Theory and Applications
Theoretical Aspects and Applications
1 082 kr
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1 367 kr
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Combined Vibrator-Slot Structures: Theory and Applications
Theoretical Aspects and Applications
1 082 kr
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Vibrator and Slot Antenna Arrays for Modern Applications
1 512 kr
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1 899 kr
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This book provides solutions to a complex of internal and external problems of electromagnetics associated with the development of theory, construction of mathematical models and the development of rigorous methods for calculating the electrodynamic characteristics of radiating structures and antenna arrays with impedance vibrator and slot elements. The issues related to the impedance synthesis of antenna arrays and analysis of large-aperture rectenna arrays are considered. Solutions to the problems of determining the electrodynamic characteristics of impedance vibrators, slot and multi-element radiators with arbitrary geometric and electrophysical parameters are obtained within the framework of a unified methodological approach to constructing asymptotic solutions of integral equations for currents. This approach made it possible to study a number of new vibrator, slotted, and combined vibrator-slotted structures and their multi-element systems. The original research results reveal the possibilities of using such structures as basic elements for creating modern antenna-waveguide devices operating in the range from meter to millimeter wavelengths which have new technical characteristics and functionalities. This book is intended for senior and postgraduate students and researchers working in the fields of radiophysics, radio engineering and antenna-feeder design.
The book covers the following topics:
Excitation of Electromagnetic Fields in Electrodynamic Volumes with Coordinate BoundariesGeneral Aspects of the Theory of Thin Impedance Vibrators and Narrow Slots in a Quasi-One-Dimensional ApproximationImpedance Vibrators Antenna ArraysSlotted Waveguide Antenna ArraysCombined Vibrator-Slot Antenna ArraysImpedance Synthesis for Vibrator Antenna ArraysImpedance Synthesis for Slot Antenna ArraysLarge-Aperture Rectenna Arrays of Wireless Power Transmission SystemsUltrawideband Combined Vibrator-Slot Antenna Arrays1 512 kr
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Electromagnetic Fields Excited in Volumes with Spherical Boundaries
1 512 kr
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1 891 kr
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This book discusses the problem of electromagnetic wave excitation in spatial regions with spherical boundaries and the accurate mathematical modeling based on numerical and analytical methods to significantly reduce the time required for developing new antenna devices. It particularly focuses on elements and systems on mobile objects of complex shape that are made of new technological materials. The experimental development of such devices and systems is an extremely time-consuming, lengthy, and expensive process. The book is intended for senior and postgraduate students and researchers working in the fields of radiophysics, radio engineering and antenna design. The authors assume that readers understand the basics of vector and tensor analysis, as well as the general theory of electrodynamics. The original results presented can be directly used in the development of spherical antennas and antenna systems for the mobile objects.
The book addresses problems concerning the construction of Green’s functions for Hertz potentials in electrodynamic volumes with spherical boundaries, and solves these clearly and concisely. It also uses specific examples to analyze areas where the results could potentially be applied. The book covers the following topics:
· excitation of electromagnetic fields in coordinate electrodynamic volumes;
· Green’s functions for spherical resonators;
· Green’s functions for infinite space outside of spherical scatterers;· electromagnetic fields of dipole radiators on spherical scatterers;
· electromagnetic fields of thin radial impedance vibrators on perfectly conducting spheres;
· electrodynamic characteristics of narrow slots in spherical surfaces;
· multi-element and combined vibrator-slot radiators on spherical surfaces.