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Telecommunications and Radio Engineering
SJR: 0.202 SNIP: 0.2 CiteScore™: 0.23

ISSN Imprimir: 0040-2508
ISSN En Línea: 1943-6009

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Telecommunications and Radio Engineering

DOI: 10.1615/TelecomRadEng.v74.i6.10
pages 469-494

OSCILLATORS WITH A NONUNIFORM DISTRIBUTION OF SURFACE IMPEDANCE NONLINEARITY

A. I. Luchaninov
Kharkov National University of Radio Engineering and Electronics, 14, Lenin Ave, Kharkov, 61166
D. S. Gavva
Kharkiv National University of Radio Electronics, 14 Nauka Ave., 61166, Kharkiv, Ukraine
S.R. Wide
Kharkov National University of Radio Engineering and Electronics, 14, Lenin Ave, Kharkiv, 61166, Ukraine

SINOPSIS

The results of investigations into nonlinear effects arising in the simplest radiating and scattering antennas are presented. It is shown that the uneven distribution of nonlinearity surface impedance (NSI) of the antenna or inclusion in the antenna quasi non-linear elements can significantly affect its performance. Varying the absolute values and the shape of the distribution of the NSI can change the shape of the current distribution on the antenna surface, and thus, change the shape of the radiation pattern. This concerns both the basic operating frequency of the antenna, and its higher harmonics. The type of the antenna excitation source is also important. The antenna characteristics on the harmonic frequencies depend on it to a significant extent.

REFERENCIAS

  1. Luchaninov, A.I., Gavva, D.S., and Omarov, M.A., Software package "WIRE" for modeling of free-structured thin-wire antennas with linear and nonlinear properties of the surface impedance.

  2. Luchaninov, A.I. and Gavva, D.S., Non-Linear Effects in Wire Antennas with Non-Linear Surface Impedance.

  3. Gavva, D.S., Luchaninov, A.I., and Omarov, M.A., Characteristics of wired electrodynamic structures excited by sources of different type.

  4. Luchaninov, A.I., Gavva, D.S., and Omarov, M.A., Choice of basis and weight functions in the problems of analyzing antennas with a nonlinear surface impedance by means of the moment method.

  5. Gavva, D.S., Identification of parameters of distributed linear elements in the problems of analyzing wired radiating structures.