ОБ ИСПОЛЬЗОВАНИИ ИНТЕГРАЛЬНЫХ УРАВНЕНИЙ ПРИ РЕШЕНИИ ЭЛЕКТРОДИНАМИЧЕСКИХ ЗАДАЧ
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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 USING OF INTEGRAL EQUATIONS IN THE SOLUTION OF ELECTRODYNAMIC PROBLEMS

Miroshnikova M.N.  

UDC 621.396
DOI:

  • Abstract
  • List of references
  • About authors

The analysis of characteristics of integral equations is carried out. The possible methods of their solution. the methods is considered. The possibility of using integral equations is indicated in the solution of electrodynamic problems.

1. Lvovich I.Ya., Preobrazhensky A.P. Calculation of characteristics metal-dielectric antennas / Bulletin of Voronezh State Technical University. 2005.V. 1. № 11. S. 26-29.

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

3. Avdeev VB, Ashikhmin A.V., Nekrylov V.M., Pasternak Yu.G., Preobrazhensky A.P. Modeling functioning in ultra-wide range of direction-finding vibrator antenna array, taking into account the influence of the housing of the mobile carrier / Antennas 2006. No. 2. S. 45-52.

4. Samoilova U.A. Analysis of complex electrodynamic objects on Basis of Parallel Computing / Modern High-Tech technologies. 2014. No. 5-2. S. 55-56.

5. Lvovich I.Ya., Lvovich Y.E., Preobrazhensky A.P. Building an algorithm for estimating the average scattering characteristics of hollow structures / Telecommunications. 2014. No. 6. S. 2-5.

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

7. Shutov G.V. An approximate model for estimating averages dispersion characteristics / Modern high technology. 2014. No. 5-2. S. 60.

8. Preobrazhensky A.P. Assessment of Combined Opportunities methods for calculating the EPR of two-dimensional ideally conducting cavities / Telecommunications. 2003. No. 11. S. 37-40.

9. Kulneva E.Yu., Gashchenko I.A. About characteristics affecting modeling of radio devices / Modern high technology. 2014. No. 5-2. S. 50.

10. Kosilov A.T., Preobrazhensky A.P. Calculation Methods radar characteristics of objects / Bulletin of Voronezh State Technical University. 2005.V. 1. No. 8. P. 68- 71.

11. Preobrazhensky A.P., Choporov O.N. Calculation algorithm radar characteristics of cavities using approximate model / Control systems and information technologies. 2005. No. 4. P. 17-19.

12. Shamaeva A.A. Radio wave propagation in the city / Success modern science. 2011. No. 7. P. 235a.

13. Blokhina T.V. Application of parallel computing methods for solving electrodynamic problems / Modern high technology technologies. 2014. No. 5-2. S. 31-32.

14. Preobrazhensky A.P. Radar forecasting characteristics of objects with radar absorbing coatings in wavelength range / Telecommunications. 2003. No. 4. P. 21-24.

15. Lvovich Ya.E., Lvovich I.Ya. Decision making in an expert virtual environment / edited by Lvovich Ya.E. // Voronezh, 2010, Publishing house "Scientific book", 139 p.

16. Lvovich Ya.E. Multi-alternative optimization: theory and Applications - Voronezh, 2006, Quarta Publishing House, 415 pp.

17. Preobrazhensky A.P. Radar forecasting characteristics of a perfectly conducting cavity in the wavelength range / Telecommunications. 2005. No. 12. P. 29-31.

18. Preobrazhensky A.P. Radar forecasting characteristics of objects in the wavelength range using discrete scatter measurement results frequencies / Telecommunications. 2004. No. 5. S. 32-35.

19. Lvovich Ya.E., Lvovich I.Ya., Preobrazhensky A.P., Golovinov S.O. Development of a computer-aided design system Wireless Communication Systems / Telecommunications. 2010. No. 11. S. 2-6.

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

21. Lvovich Ya.E., Lvovich I.Ya., Preobrazhensky A.P., Golovinov S.O. Study of ray tracing for design wireless communication systems / electromagnetic waves and electronic systems. 2012. T. 17. No. 1. S. 32-35.

22. Golovinov S.O., Preobrazhensky A.P., Lvovich I.Ya. Modeling the propagation of millimeter waves in urban development based on a combined algorithm / Telecommunications. 2010. No. 7. P. 20-23.

23. Lvovich Ya.E., Lvovich I.Ya., Preobrazhensky A.P., Golovinov S.O. Study of ray tracing in design wireless communication systems / Information technology. 2011. № 8.P. 40-42.

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

25. Erasov S.V. EMC issues with the construction of wireless communication systems / Bulletin of Voronezh Institute of High Technologies. 2013. No. 10. P. 137-143.

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

27. Golovinov S.O., Khromykh A.A. Systems Management Issues Mobile Communications / Bulletin of the Voronezh Institute of High technology. 2012. No. 9. S. 13-14.

28. http://storage.library.opu.ua/online/periodic/ee_70/24.pdf

29. Preobrazhensky A.P., Khukhryansky Yu.P. Approximation scattering characteristics of electromagnetic waves of elements, constituent objects of complex shape / Bulletin Voronezh State Technical University. 2005. T. 1. No. 8. S. 15-16.

30. Baranov A.V. Some features of ray calculation methods characteristics of the propagation of electromagnetic waves / Bulletin Voronezh Institute of High Technologies. 2013. No. 10. P. 9-13.

31. Preobrazhensky A.P. Definition study shape of the object in the neighborhood of the restoration of local reflectors on the surface of objects according to their reciprocal diagrams scattering / Telecommunications. 2003. No. 4. P. 29-32.

32. Goncharova N.P. Application of data approximation methods / The successes of modern science. 2011. No. 7. P. 97a.

33. http://num-anal.srcc.msu.ru/meth_mat/prac_qdf/ps/quadrpdf.pdf

34. Mishin Ya.A. About CAD systems in wireless networks / Bulletin of the Voronezh Institute of High technology. 2013. No. 10. P. 153-156.

35. Preobrazhensky A.P. Analysis Modeling and Algorithmization diffraction structures in CAD radar antennas / Voronezh, Scientific book, 2007, 248 p.

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

Miroshnikova Marina Nikolaevna

Email: stepnoffalexand@yandex.ru

закрытое акционерное общество

Voronezh, Russian Federation

Keywords: integral equations, electromagnetic wave, scattering, electrodynamics

For citation: Miroshnikova M.N. ABOUT THE USING OF INTEGRAL EQUATIONS IN THE SOLUTION OF ELECTRODYNAMIC PROBLEMS. Modeling, Optimization and Information Technology. 2014;2(2). Available from: https://moit.vivt.ru/wp-content/uploads/2014/07/Miroshnikova_2_14_2.pdf DOI: (In Russ).

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