О ВОЗМОЖНОСТИ УТОЧНЕНИЯ ТОНКОПРОВОЛОЧНОГО ПРИБЛИЖЕНИЯ ВИБРАТОРНЫХ АНТЕНН
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Научный журнал Моделирование, оптимизация и информационные технологииThe scientific journal Modeling, Optimization and Information Technology
Online media
issn 2310-6018

ABOUT THE POSSIBILITY OF CLARIFYING THICK-WIRE APPROXIMATION FOR VIBRATOR ANTENNAS

Gorbenko O.N.   Rozhkova A.A.  

UDC 621.396
DOI:

  • Abstract
  • List of references
  • About authors

The discussion about the possibility of clarifying thick-wire approximation for vibrator antennas on the basis of comparison with a strict three-dimensional solution is held. The main phases of the algorithm is pointed out

1. Golovinov S.O., Preobrazhensky A.P., Lvovich I.Ya. Modeling millimeter wave propagation in urban development based Combined Algorithm / Telecommunications. 2010. No. 7. P. 20-23.

2. Lvovich Ya.E., Lvovich I.Ya., Preobrazhensky A.P., Golovinov S.O. The study of optimization methods in the design of radio systems / Theory and technique of radio communications. 2011. No. 1. S. 5-9.

3. Golovinov S.O., Lvovich I.Ya., Preobrazhensky A.P. Development of a simulator of a data transmission path for satellite band / Bulletin of Voronezh State Technical University. 2009.V. 5. № 4.P. 214-217.

4. Ryuchin A.S. Problems of designing electronic devices / Bulletin of the Voronezh Institute of High Technologies. 2013. No 10. S. 45-53.

5. Verchenko G.I. Characteristics of antenna arrays / Bulletin of the Voronezh Institute of High Technologies. 2013. No. 11. S. 103-105.

6. Miloshenko OV Methods for assessing the propagation characteristics of radio waves in mobile radio communication systems / Bulletin of the Voronezh Institute of High Technologies. 2012. No. 9. S. 60-62.

7. Baranov A.V. Problems of the functioning of mesh-networks / Bulletin of the Voronezh Institute of High Technologies. 2012. No. 9. P. 49-50.

8. Golovinov S.O., Khromykh A.A. Problems of managing mobile communication systems / Bulletin of the Voronezh Institute of High Technologies. 2012. No. 9. S. 13-14.

9. Shutov G.V. Evaluation of the possibility of using an approximate model in assessing the average characteristics of the scattering of electromagnetic waves / Bulletin of the Voronezh Institute of High Technologies. 2013. No 10. S. 61-67.

10. Vinyukov M.S. Problems of propagation of radio waves in space / Bulletin of the Voronezh Institute of High Technologies. 2013. No 10. S. 66-70.

11. Baranov A.V. Some features of radiation methods for calculating the propagation characteristics of electromagnetic waves / Bulletin of the Voronezh Institute of High Technologies. 2013. No. 10. P. 9-13.

12. Verchenko G.I. Synthesis of antenna and diffraction structures / Bulletin of the Voronezh Institute of High Technologies. 2013. No. 11. S. 100-102.

13. Golovin A.A., Rodionova K.Yu. Iterative method for solving problems scattering of electromagnetic waves on a rectangular parallelepiped / Bulletin of the Voronezh Institute of High Technologies. 2013. No. 11. S. 30-34.

14. Vinyukov M.S. Analysis of the characteristics of signal propagation in wireless communication systems with interference / Bulletin of the Voronezh Institute of High Technologies. 2013. No. 11. P. 40-47.

15. Bashkatov A.V., Chekmarev R.S. Scattering Modeling UWB signals at objects / Bulletin of the Voronezh Institute of High technology. 2013. No. 11. S. 4-7.

16. Lvovich I.Ya., Preobrazhensky A.P., Khromykh A.A. Estimation of average scattering characteristics of objects / In the world of scientific discoveries. 2013. No 2 (38). S. 188-200.

17. Lvovich Ya.E., Lvovich I.Ya., Preobrazhensky A.P., Golovinov S.O. Development of a computer-aided design system for wireless communication systems / Telecommunications. 2010. No. 11. S. 2-6.

18. Preobrazhensky A.P., Khukhryansky Yu.P. Approximation of the scattering characteristics of the electromagnetic waves of the elements included in the composition complex objects / Bulletin of the Voronezh State technical university. 2005. T. 1. No. 8. S. 15-16.

19. Kosilov A.T., Preobrazhensky A.P. Methods for calculating the radar characteristics of objects / Bulletin of the Voronezh State technical university. 2005. T. 1. No. 8. S. 68-71.

20. Lvovich Ya.E., Lvovich I.Ya., Preobrazhensky A.P. Problem solving evaluation of the characteristics of the scattering of electromagnetic waves by diffraction structures during their design / Bulletin of the Voronezh Institute of High Technologies. 2010. No. 6. S. 255-256.

21. Computational methods in electrodynamics / Ed. R. Mitra. - M .: Mir, 1977 .- 485 p.

22. Preobrazhensky A.P. Modeling and algorithmization of the analysis of diffraction structures in CAD radar antennas / Voronezh, Scientific Book, 2007, 248 pp.

23. Preobrazhensky A.P., Yurov R.P. CAD of modern radio-electronic devices and systems / Bulletin of Voronezh State Technical University. 2006. T. 2. No. 3. S. 35-37.

24. Lvovich I.Ya., Preobrazhensky A.P., Yurov R.P., Choporov O.N. Software package for automated performance analysis scattering of objects using mathematical models / Systems management and information technology. 2006. No. 2 (24). S. 96-98.

25. Lvovich I.Ya., Preobrazhensky A.P. Development of information and CAD software for diffraction structures and radar antennas / Bulletin of Voronezh State Technical University. 2006.Vol. 2. No. 12. P. 63-68.

26. Lvovich I.Ya., Preobrazhensky A.P. Development of construction principles CAD of diffraction structures and radar antennas / Bulletin Voronezh State Technical University. 2006.V. 2. No. 12. S. 125-127.

27. Preobrazhensky A.P., Yurov R.P. Performance Calculation Subsystem electromagnetic waves of elementary reflectors / Bulletin of the Voronezh State Technical University. 2006. T. 2. No. 3. S. 76-77.

28. Preobrazhensky A.P., Yaroslavtsev N.P. Modern radar systems for measuring radar characteristics / Bulletin of the Voronezh State Technical University. 2005. T. 1. No. 8. S. 29-32.

29. Preobrazhensky A.P., Choporov O.N. A technique for predicting the radar characteristics of objects in the wavelength range using the results of measurements of scattering characteristics at discrete frequencies / Control systems and information technologies. 2004. No. 2 (14). S. 98-101.

30. Preobrazhensky A.P. Prediction of the radar characteristics of objects in the wavelength range using the measurement results of scattering characteristics at discrete frequencies / Telecommunications. 2004. No. 5. S. 32-35.

31. Baranov A.V. On the possibility of predicting scattering characteristics two-dimensional ideally conducting wedge / Bulletin of the Voronezh Institute of High Technologies. 2013. No. 10. P. 13-16.

Gorbenko Olesya Nikolaevna

Email: stepnoffalexand@yandex.ru

Voronezh Institute of High Technologies

Voronezh, Russian Federation

Rozhkova Alina Alexandrovna

Voronezh Institute of High Technologies

Voronezh, Russian Federation

Keywords: antenna, integral equation, radio waves, fredholm equation

For citation: Gorbenko O.N. Rozhkova A.A. ABOUT THE POSSIBILITY OF CLARIFYING THICK-WIRE APPROXIMATION FOR VIBRATOR ANTENNAS. Modeling, Optimization and Information Technology. 2014;2(2). Available from: https://moit.vivt.ru/wp-content/uploads/2014/07/GorbenkoRozhkova_2_14_1.pdf DOI: (In Russ).

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