Dependence of the lateral and cross-polarized radiation reflector antennas on their size and focal length

Authors

  • Nikolay N. Gorobets Karazin Kharkiv National University, Ukraine https://orcid.org/0000-0003-3022-9044
  • V. I. Kiyko Kharkiv National University, Ukraine
  • V. N. Gorobets Kharkiv National University, Ukraine

DOI:

https://doi.org/10.1109/ICATT.2013.6650803

Keywords:

microwaves, antenna, reflector antenna, feed horn, current method, cross-polarized radiation, side lobe level

Abstract

Pattern in all planes of observation in the front half, gain, efficiency antenna area, the width of the main lobe, the levels of lateral and cross-polarized radiation axially symmetric parabolic reflector antennas are designed by method of currents the physical theory of diffraction. The irradiator is given in the form of the approximate mathematical model within the aperture theory. Shading reflector focal unit in the algorithm and computer programs recorded. It is shown that the system is a "reflector + irradiator" can be optimized for maximum gain when a predetermined maximum level sidelobes. Influence of the size of a parabolic reflector (in the calculation of the diameter varied from 10 to 100 wavelengths) and its focal length (focal length to the diameter of the reflector was varied from 0.5 to 3.0) studied in detail. It is shown that in the case of antennas optimized maximum level and cross-polarized radiation is weakly dependent on the diameter of the reflector and decreases with increasing depth of the reflector.

References

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GOROBETS, N.N.; KIYKO, V.I.; GOROBETS, V.N. Analisys of cross-polarized radiation of optimized reflector antennas. Proc. of 8th Int. Kharkov Symp. on Physics and Engineering of Microwaves, Millimeter and Submillimeter Waves, MSMW, 2013, Kharkov, Ukraine.

Published

2014-02-19