MODELING EVOLUTIONARY DYNAMICS OF COMPLEX ECOSYSTEMS USING COMBINED CHAOS THEORY AND NEURAL NETWORKS METHODS: I. FORMAL THEORETICAL BASIS FOR APPLICATION TO ENVIRONMENTAL RADIOACTIVITY DYNAMICS

EP.
2017;
: pp. 157-164
1
Odessa State Environmental University
2
Odessa State Environmental University
3
Odessa State Environmental University
4
Odessa State Environmental University
5
Odessa State Environmental University
6
Odessa State Environmental University

We present elements of the formal mathematical approach to the analysis, modeling and further prediction of the nonlinear dynamics of chaotic systems based on the methods of nonlinear analysis and neural networks. As the object of studing is the environmental radioactivity dynamics. Using such a combined method is proposed for the first time in the environmental radioactivity dynamnics studying. Use of the information about the phase space in the simulation of the evolution of the physical process in time can be considered as a major innovation in the modeling of chaotic processes in the complex systems. This concept can be achieved by constructing a parameterized nonlinear function F (x, a), which transform y (n) to y(n+1) = F[y(n),a], and then use different criteria for determining the parameters a . Firstly to build the desired functions it is offered using the wavelet expansions. Further, since there is the notion of local neighborhoods, we can create a model of the process occurring in the neighborhood, at the neighborhood and by combining together these local models to construct a global non-linear model to describe most of the structure of the attractor.

[1] Wada T., Tomiya A., Enomoto M. et al: Journ. of Env. Radioactivity, 2016, 151, 144.

[2] Glushkov A. V., Safranov T. A., Khetselius O. Yu., Ignatenko A. V., Buyadzhi V. V., Svinarenko A. A.: Environmental Problems., 2016, 1(2), 115.

[3] Khetselius O. Yu.: Dynamical Systems Applications, Eds. J. Awrejcewicz, M. Kazmierczak, P. Olejnik, J. Mrozowski (Lodz), 2013, T2, 145.

[4] Glushkov A. V., Safranov T. A., Khetselius O. Yu., Prepelitsa G. P., Mansarliysky V. F., Bykowszczenko, N.: Environmental Problems. 2016, 1(2), 105.

[5] Glushkov A. V., Khokhlov V. N., Serbov N. G., Buyadzhi V., Bunyakova Yu., Solyanikova E.: Environmental Problems., 2016, 1(2), 111.

[6] Glushkov A. V., Bunyakova Yu. Ya., Buyadzhi V. V., Dubrovskaya Yu. V., Kuznetsova A. A., Khetselius O. Yu.: Sensor Electr. andMicrosystem Techn., 2017, 14(3), 24.

[7] Glushkov A. V., Khetselius O. Yu., Svinarenko A. A., Buyadzhi V., Ternovsky V., Kuznetsova A., Bashkarev P.: In: Recent Studies in Perturbation Theory. InTech, 2017, pp. 131–150 (DOI: 10. 5772/intechopen. 69102).

[8] Svinarenko A. A., Glushkov A. V., Khetselius O. Yu., Ternovsky V. B., Dubrovskaya Yu. V., Kuznetsova A. A., Buyadzhi V. V.: In: Rare Earth Element. InTech, 2017, pp. 83–104 (DOI: 10. 5772/intechopen. 69314).

[9] Glushkov A. V., Khetselius O., Gurnitskaya E., Loboda A., Sukharev D.: AIP Conf. Proc., 2009, 1102, 168.

[10] Khetselius O. Yu.: Photoelectronics, 2005, 14, 83.

[11] Glushkov A. V.: Relativistic quantum theory. Quantum mechanics of atomic systems. Odessa, Astroprint, 2008.

[12] Khetselius O. Yu.: Hyperfine structure of atomic spectra., Odessa, Astroprint, 2008.

[13] Bunyakova Yu. Ya., Glushkov A. V.: Analysis and forecast of the impact of anthropogenic factors on air basein of an industrial city. Odessa, Ecology, 2010.

[14] Glushkov A. V.:Ukr. Hydromet. Journ., 2014, No. 15, 32.

[15] Glushkov A., Vaschenko V., Gerasimenko G., Bunyakova Yu.: Dynamical Systems Applications, Eds. J. Awrejcewicz, M. Kazmierczak, P. Olejnik, J. Mrozowski (Lodz)., 2013, T. 2, 241.

[16] Glushkov A. V., Kuzakon V. M., Ternovsky V. B., Buyadzhi V. V.: Dynamical Systems Theory Eds. J. Awrejcewicz, M. Kazmierczak, P. Olejnik, J. Mrozowski (Lodz), 2013, 1, 461.

[17] Glushkov A. V., Khokhlov V. N., Bunyakova Yu. Ya., Prepelitsa G. P., Tsenenko I. A.: Sensor Electr. and Microsyst. Techn., 2005, 4, 27.

[18] Glushkov A. V., Khokhlov V. N., Prepelitsa G. P., Tsenenko I. A.: Optics of atm. and ocean, 2004, 14, 219.

[19] Glushkov A., Khetselius O., Kuzakon V., Prepelitsa G., Solyanikova E., Svinarenko A.: Dynamical Systems – Theory and Applications, 2011, BIF110.

[20] Glushkov A. V., Bunyakova Yu. Ya., Zaichko P. A.: Proc. Intern. Geometry Center, 2013, 6(3), 6.

[21] Bunyakova Yu. Ya., Khetselius O. Yu.: Proc. of the 8th Int. Carbon Dioxide Conf. (Germany), 2009, T2-098.

[22] Daubechies I.: Ten Lectures on Wavelets. Philadelphia, SIAM, 1992.

[23] Morlet J. et al: Geophys., 1982, 47, 203.

[24] Nason G., von Sachs R., Kroisand G.: J. Royal Stat. Soc., 2000, B62, 271.

[25] Glushkov A. V., Khokhlov V. N., Svinarenko A. A., Bunyakova Yu. Ya., Prepelitsa G. P.: Sensor Electr. and Microsys. Techn., 2005, 2(3), 51.

[26] Glushkov A. V., Khokhlov V. N., Tsenenko I. A.: Nonlinear Proc. in Geophys., 2004, 11(3), 285.

[27] Glushkov A. V.,Kuzakon V. M., Khetselius O. Yu., Ternovsky V. B.: Proc. Int. Geom. Centre., 2015, 8(3-4), 69.

[28] Glushkov A. V., Khetselius O. Y., Brusentseva S. V., Zaichko P. A., Ternovsky V. B.: Advances in Neural Networks, Fuzzy Systems and Artificial Intelligence. Series: Recent Adv. in Computer Engineering (Gdansk), 2014, 21, 69.

[29] Glushkov A. V., Svinarenko A. A., Buyadzhi V. V., Zaichko P. A., Ternovsky V. B.: Advances in Neural Networks, Fuzzy Systems and Artificial Intelligence, Series: Recent Adv. in Computer Engineering (Gdansk), 2014, 21, 143.

[30] Bunyakova Yu. Ya., Glushkov A. V., Khetselius O. Yu., Ignatenko A. V., Bykowszczenko N., Buyadzhi V. V.: Sensor Electr. and Microsyst. Techn., 2017, 14(3), 65.

[31] Glushkov A. V., Khetselius O. Yu., Malinovskaya S. V.: European Phys. Journal Special Topics, 2008, 160, 195.

[32] Glushkov A. V., Khetselius O. Yu., Malinovskaya S. V.: Molec. Phys., 2008, 106, 1257.

[33] Khokhlov V. N., Glushkov A. V., Tsenenko I. A.: Nonlinear Processes in Geophysics., 2004, 11, 295.

[34] Gottwald G. A., Melbourne I.: Proc. Roy. Soc. London. Ser. A. Math. Phys. Sci., 2004, 460, 603.

[35] Packard N. H. et al: Phys. Rev. Lett., 1980, 45, 712. [36] Kennel M., Brown R., Abarbanel H.: Phys. Rev. A., 1992, 45, 3403.

[37] Abarbanel H. D. I., Brown R., Sidorowich J. J., Tsimring L. Sh.: Rev. Mod. Phys, 1993, 65, 1331.

[38] Schreiber T.: Phys. Rep., 1999, vol. 308, 1.

[39] Fraser A., Swinney H.: Phys. Rev. A., 1986, 33, 1134.

[40] Grassberger P., Procaccia I., Physica D, 1983, 9, 189.

[41] Gallager R. G.: Information theory and reliable communication. N.–Y., Wiley, 1968.

[42] Prepelitsa G. P., Glushkov A. V., Lepikh Ya. I. et al: Sensor Electr. and Microsyst. Techn., 2014, 11(4), 43.

[43] Glushkov A. V., Khetselius O. Yu., Prepelitsa G. P., Svinarenko A.: Proc. Intern. GeometryCenter, 2013, 6, 43.

[44] Khetselius O. Yu.: AIP Conf. Proc., 2008, 15, 363.

[45] Glushkov A. V., Khetselius O. Yu., Loboda A. V., Svinarenko A. A.: Frontiers in Quantum Systems in Chemistry and Physics (Springer)., 2008, 18, 543.

[46] Glushkov A. V., Khetselius O. Yu., Lovett L.: Advances in the Theory of Atomic and Molecular Systems: Dynamics, Spectroscopy, Clusters, and Nanostructures. (Springer), 2009, 20, 125.

[47] Khetselius O. Yu.: Photoelectronics, 2005, 14, 83.

[48] Khetselius O. Yu.: Journ. of Physics: Conf. Series (IOP, UK), 2012, 397, 012012.

[49] Khetselius O. Yu., Florko T. A., Svinarenko A. A., Tkach T. B.: Phys. Scripta (IOP), 2013, T153, 014037.

[50] Khetselius O. Yu.: Phys. Scripta., 2009, T135, 014023.

[51] Khetselius O. Yu.: Frontiers in Quantum Methods and Applications in Chemistry and Physics (Springer), 2015, 29, 54–76.

[52] Khetselius O. Y.: Quantum Systems in Chemistry and Physics. Progress in Theoretical Chemistry and Physics (Springer, Dordrecht), 2012, 26, 217–229.

[53] Glushkov A. V.: Quantum Systems in Chemistry and Physics. Progress in Theoretical Chemistry and Physics (Springer, Dordrecht), 2012, 26, 231–252.

[54] Glushkov A. V., Rusov V. D., Ambrosov S., Loboda A.: New projects and new lines of research in nuclear physics (World Scientific), 2003, 126.

[55] Glushkov A. V., Malinovskaya S. V.: New projects and new lines of research in nuclear physics. Eds. G. Fazio and F. Hanappe (World Scientific), 2003, 242.

[56] Glushkov A. V., Malinovskaya S. V., Gurnitskaya E. P., Khetselius O. Yu., Dubrovskaya Yu. V.: J. Phys.: Conf. Ser. (IOP), 2006, 35, 425.

[57] Malinovskaya S., Glushkov A., Khetselius O., Lopatkin Yu., Loboda A., Svinarenko A., Nikola L., Perelygina T.: Int. Journ. Quant. Chem., 2011, 111(2), 288.

[58] Malinovskaya S. V., Glushkov A. V., Khetselius O. Yu., Svinarenko A. A., Mischenko E. V., Florko T. A.: Int. Journ. Quant. Chem., 2009, 109(14), 3325.

[59] Glushkov A. V., Khetselius O. Yu., Malinovskaya S. V.: Molec. Phys. , 2008, 106, 1257.

[60] Glushkov A. V., Khetselius O. Yu., Svinarenko A. A., Prepelitsa G. P.: Energy Approach to Atoms in a Laser Field and Quantum Dynamics with Laser Pulses of Different Shape. In: Coherence and Ultrashort Pulse Laser Emission, Ed. by F. J. Duarte (InTech), 2010, 159.

[61] Malinovskaya S. V., Glushkov A. V., Dubrovskaya Yu. V., Vitavetskaya L. A., Recent Advances in the Theory of Chemical and Physical Systems (Springer), 2006, 15, 301.

[62] Glushkov A. V., Khetselius O. Yu., Svinarenko A. A.: Advances in the Theory of Quantum Systems in Chem. and Phys. (Springer), 2012, 22, 51.

[63] Glushkov A. V., Malinovskaya S. V., Sukharev D. E., Khetselius O. Yu., Loboda A. V., Lovett L.: Int. Journ. Quantum Chem., 2009, 109 (8), 1717.

[64] Glushkov A. V., Relativistic and correlation effects in spectra of atomic systems., Odessa,Astroprint, 2006.

[65] Glushkov A. V.: Atom in electromagnetic field., Kiev, KNT, 2005.

[66] Glushkov A. V., Ivanov L. N.: Phys. Lett. A., 1992,170, 33.

[67] Ivanova E. P., Ivanov L. N., Glushkov A. V., Kramida A. E.: Phys. Scripta., 1985, 32, 513.

[68] Glushkov A. V., Ivanov L. N.: J. Phys. B., 1993, 26, L379.

[69] Ivanova E. P., Glushkov A. V.: J. Quant. Spectr. and Rad. Transfer., 1986, 36, 127.

[70] Glushkov A. V., Ivanov L. N., Ivanova E. P.: Autoionization Phenomena in Atoms., M., Moscow State University, 1986, 58-160.

[71] Glushkov A. V., Ambrosov S. V., Loboda A. V., Chernyakova Yu., Svinarenko A. A. , Khetselius O. Yu.: Nucl. Phys. A.: Nucl. and hadr. Phys., 2004, 734, 21.

[72] Glushkov A V 2012 J. Phys.: Conf. Ser. 397 012011

[73] Glushkov A. V., Khetselius O. Y. and Svinarenko A. A.: Phys. Scripta., 2013, T153, 014029.

[74] Glushkov A. V.: AIP Conf. Proc., 2005, 796 (1), 206.

[75] Glushkov A. V., Malinovskaya S. V., Chernyakova Y. G., Svinarenko A. A.: Int. J. Quant. Chem., 2004, 99, 889.

[76] Glushkov A. V., Khetselius O. Yu., Gurnitskaya E. P. Loboda A. V., Florko T. A., Sukharev D. E., Lovett L.: Frontiers in quantum systems in chemistry and physics (Springer), 2008, 18, 507.

[77] Glushkov A. V., Svinarenko A. A., Khetselius O. Yu., Buyadzhi V. V., Florko T. A., Shakhman A. N., Frontiers in Quantum Methods and Applications in Chemistry and Physics (Springer, Cham), 2015, 29, 197.

[78] Buyadzhi V. V., Glushkov A. V., Mansarliysky V. F., Ignatenko A. V., Svinarenko A. A.: Sensor Electr. and Microsyst. Techn., 2015, 12(4), 27.

[79] Svinarenko A. A.: J. Phys.: Conf. Ser. 2014, 548, 012039

[80] Bunyakova Yu. Ya., Glushkov A. V., Khetselius O. Yu., Ignatenko A. V., Buyadzhi V. V., Bykowszczenko N.: Sensor Electr. and Microsyst. Techn., 2017, 14(3), 65.

[81] Prepelitsa G. P., Buyadzhi V. V., Ternovsky V. B.: Photoelectronics., 2013, 22, 103.

[82] Glushkov A. V., Mansarliysky V. F., Khetselius O. Yu., Ignatenko A. V., Smirnov A. and Prepelitsa G. P.: J. Phys.: Conf. Ser., 2017, 810, 012034.

[83] Bunyakova Yu. Ya., Glushkov A. V., Khetselius O. Yu., Ignatenko A. V., Buyadzhi V. V., Bykowszczenko N.: Sensor Electr. And Microsyst. Techn., 2017, 14(3), 65.

[84] Glushkov A. V., Gurskaya M. Yu., Ignatenko A. V., Smirnov A. V., Serga I. N., Svinarenko A. A., Ternovsky E. V.: J. Phys.: Conf. Ser., 2017, 905, 012004.

[85] Khetselius O. Yu., Glushkov A. V., Gurskaya M. Yu., Kuznetsova A. A., Dubrovskaya Yu. V., Serga I. N., Vitavetskaya L.:J. Phys.: Conf. Ser., 2017, 905, 012029.

[86] Glushkov A. V., Malinovskaya S. V., Svinarenko A. A., Vitavetskaya L. A.: Sensor Electronics and Microsyst. Techn., 2005, 2(2), 29.