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Zhurnal Vychislitel'noi Matematiki i Matematicheskoi Fiziki, 2013, Volume 53, Number 6, Pages 1027–1040
DOI: https://doi.org/10.7868/S0044466913060094
(Mi zvmmf9848)
 

This article is cited in 3 scientific papers (total in 3 papers)

Computer algebra methods in the study of nonlinear differential systems

V. D. Irtegov, T. N. Titorenko

Institute of System Dynamics and Control Theory, Siberian Branch of the Russian Academy of Sciences, Irkutsk
Full-text PDF (240 kB) Citations (3)
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Abstract: Some issues concerning computer algebra methods as applied to the qualitative analysis of differential equations with first integrals are discussed. The problems of finding stationary sets and analyzing their stability and bifurcations are considered. Special attention is given to algorithms for finding and analyzing peculiar stationary sets. It is shown that computer algebra tools, combined with qualitative analysis methods for differential equations, make it possible not only to enhance the computational efficiency of classical algorithms, but also to implement new approaches to the solution of well-known problems and, in this way, to obtain new results.
Key words: differential equations, first integrals, qualitative analysis, dynamical systems, computer algebra.
Received: 15.06.2012
Revised: 26.08.2012
English version:
Computational Mathematics and Mathematical Physics, 2013, Volume 53, Issue 6, Pages 845–857
DOI: https://doi.org/10.1134/S0965542513060092
Bibliographic databases:
Document Type: Article
UDC: 519.634
Language: Russian
Citation: V. D. Irtegov, T. N. Titorenko, “Computer algebra methods in the study of nonlinear differential systems”, Zh. Vychisl. Mat. Mat. Fiz., 53:6 (2013), 1027–1040; Comput. Math. Math. Phys., 53:6 (2013), 845–857
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  • This publication is cited in the following 3 articles:
    Citing articles in Google Scholar: Russian citations, English citations
    Related articles in Google Scholar: Russian articles, English articles
    Журнал вычислительной математики и математической физики Computational Mathematics and Mathematical Physics
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    Abstract page:414
    Full-text PDF :110
    References:86
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