МЕТОДИКА РАСЧЕТА ПАРАМЕТРОВ ЭЛЕКТРОМАГНИТНОГО ПОЛЯ, РАССЕЯННОГО ТЕЛОМ СЛОЖНОЙ ФОРМЫ В БЛИЖНЕЙ ЗОНЕ (на англ.)
Работая с нашим сайтом, вы даете свое согласие на использование файлов cookie. Это необходимо для нормального функционирования сайта, показа целевой рекламы и анализа трафика. Статистика использования сайта отправляется в «Яндекс» и «Google»
Научный журнал Моделирование, оптимизация и информационные технологииThe scientific journal Modeling, Optimization and Information Technology
Online media
issn 2310-6018

THE TECHNIQUE OF CALCULATION THE PARAMETERS OF THE ELECTROMAGNETIC THE FIELDS SCATTERED BY THE BODY WITH COMPLEX FORM IN THE NEAR ZONE

Stefanovich Y.,  Ruzhitsky E. 

UDC 621.396
DOI:

  • Abstract
  • List of references
  • About authors

The paper is based on the methodology that uses the representation of an object of complex shape as a set of facets, we investigate the characteristics of scattered by this object in its near zone. It is shown how, using the calculated data to explore the effect of the spatial configuration of the field on the accuracy of measurement of angular coordinates of the object. The calculated dependence of the relative field amplitude of the object and the plate from the corner for the near zone to the far zone. The graphical analysis of the dependencies shows that in addition to monotonic attenuation length fields exist oscillating damped oscillations. It is believed that the antenna is moved around the object at random are averaged over all viewing angles characteristics of the scattered field. After calculating the parameters of the distribution law of a random variable from section to section, we can conclude about how changing the process in time. The analysis demonstrates that when we move from the far zone to the near, there is a shift of peak values of amplitudes and is an extension of the main lobe of the secondary radiation. The histograms of the distributions of amplitudes and phases of a complex object, after analysis it was found that the distribution of instantaneous values of the amplitudes of the scattered field by the object is described by Rayleigh. If we consider the distribution of the instantaneous phase of the scattered field, the shape of the histogram is close in form to the histogram of a uniform law. The analysis of the results allows to assert that the regularities of the distribution of values of amplitudes and phases of the scattered field related to the far and near zones will be the same.

1. Newell A.C. Estimating the Effect of Higher Order Azimuthal Modes in Spherical Near-Field Probe Correction / A.C.Newell, S.F.Gregson // The 8th European Conference on Antennas and Propagation (EuCAP 2014) 6-11 April 2014.

2. Newell A.C. Estimating the Effect of Higher Order Modes in Spherical NearField Probe Correction / A.C.Newell, S.F.Gregson // Antenna Measurement Techniques Association (AMTA) 35th Annual Meeting & Symposium, Columbus, Ohio, October 6-11, 2013.

3. Hanson J.E. Spherical Near-Field Antenna Measurements / J.E.Hanson // IEE Electromagnetic Waves Series 26, 1988, Peter Peregrinus Ltd, London, UK, ISBN 0 86341 110 X, pp. 149.

4. Scott W. Wedge Wave techniques for noise modeling and measurement / Scott W. Wedge and David B Rutledge // IEEE Trans. Microwave Theory Tech., vol. 40, no. 11, pp. 2004-2012, 1992.

5. Nauwelaers H. An. Measurement technique for active microstrip antennas / Nauwelaers H. An, B., A. van de Capelle // Electronic Letters, Vol. 29, No. 18, pp. 1646 - 1647, (1993).

6. Miloshenko O. V. estimation Methods for propagation characteristics of radio waves in systems of mobile radio communications / O. V.Miloshenko // Bulletin of Voronezh Institute of high technologies. 2012. No. 9. p. 60-62

7. Mishin Y. A. computer-aided design in wireless networks / Y.A.Mishin // Vestnik of Voronezh Institute of high technologies. 2013. No. 10. p. 153- 156.

8. Golovinov O. S. Problems of control of systems of mobile communication / O. S.Golovinov, A. A.Khromykh // Bulletin of Voronezh Institute of high technologies. 2012. No. 9. p. 13-14.

9. Schmidt R. O. Multiple Emitter Location and Signal Parameter Estimation / R. O. Schmidt // IEEE Trans. On Antennas and Propagation, vol. AP-34, no. 3, pp. 276-280, 1986.

10. Walls F. L. Reducing errors, complexity, and measurement time for PM noise measurements / F. L.Walls // Proc. 1993 Frequency Control Symp., 1993, pp.81-86.

11. Iskander M. F. Propagation prediction models for wireless communication systems / M. F.Iskander and Z.Yun // IEEE Trans. Microw. Theory Techniques, vol. 50, pp. 662-673, March 2002.

12. Lee S. W. A uniform asymptotic theory of electromagnetic diffraction by a curved wedge / S. W.Lee, G. A.Deschamps // IEEE Trans.Antennas Propagat., Vol. AP-24, 25-34, 1976.

13. Knott E. F., Senior T. B. A., Uslenghi P. L. E. High frequency backscattering from a metallic disk / E. F.Knott , T. B. A.Senior, P. L. E.Uslenghi // Proc. Inst. Elec. Eng., Vol. 118, No. 12, 1736-1742, 1971

14. Knott E. F., Senior T. B. A., Uslenghi P. L. E. High frequency backscattering from a metallic disk / E. F.Knott , T. B. A.Senior, P. L. E.Uslenghi // Proc. Inst. Elec. Eng., Vol. 118, No. 12, 1736-1742, 1971

15. Lvovich I.Y. Optimization of electromagnetic scattering characteristics on the objects of complex shape based on the "ant" algorithm / I.Y.Lvovich, Y.E.Lvovich, A.P.Preobrazhenskiy, O.N. Choporov // Research Journal of Pharmaceutical, Biological and Chemical Sciences. 2016. Т. 7. № 5. С. 990- 998.

16. Papa R. J. The variation of bistatic rough surface scattering cross section for a physical optics model / R. J.Papa, J. L.Lennon, R. L.Taylor // IEEE Trans. Antennas Propag. AP-34, 1986, pp.1229-1236

Stefanovich Yuri

Pan-European University

Bratislava, Slovakia

Ruzhitsky Eugene
Professor
Email: eugen.ruzicky@paneurouni.com

Pan-European University

Bratislava, Slovakia

Keywords: complex object, electromagnetic wave, near zone, scattering, diffraction

For citation: Stefanovich Y., Ruzhitsky E. THE TECHNIQUE OF CALCULATION THE PARAMETERS OF THE ELECTROMAGNETIC THE FIELDS SCATTERED BY THE BODY WITH COMPLEX FORM IN THE NEAR ZONE. Modeling, Optimization and Information Technology. 2017;5(2). URL: https://moit.vivt.ru/wp-content/uploads/2017/05/StefanovicRuzitsky_2_17_1.pdf DOI: (In Russ).

558

Full text in PDF

Published 30.06.2017