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Contemporary Mathematics. Fundamental Directions, 2024, Volume 70, Issue 1, Pages 77–98
DOI: https://doi.org/10.22363/2413-3639-2024-70-1-77-98
(Mi cmfd530)
 

On limit cycles of autonomous systems

T. M. Ivanovaa, A. B. Kostina, A. I. Rubinshtein, V. B. Sherstyukovbc

a National Research Nuclear University “MEPhI,” Moscow, Russia
b Lomonosov Moscow State University, Moscow, Russia
c Moscow Center of Fundamental and Applied Mathematics, Moscow, Russia
References:
Abstract: We consider the problem of the existence of limit cycles for autonomous systems of differential equations. We present quite elementary considerations that can be useful in discussing qualitative issues that arise in the course of ordinary differential equations. We establish that any simple closed curve defined by the equation $F(x,y)=1$ with a sufficiently general function $F$ is a limit cycle for the corresponding autonomous system on the plane (and even for an infinite number of systems depending on the real parameter). These systems are written out explicitly. We analyze in detail several specific examples. Graphic illustrations are provided.
Keywords: autonomous system on the plane, periodic solutions, positive definite function, stable limit cycle.
Bibliographic databases:
Document Type: Article
UDC: 517.925.4
Language: Russian
Citation: T. M. Ivanova, A. B. Kostin, A. I. Rubinshtein, V. B. Sherstyukov, “On limit cycles of autonomous systems”, Functional spaces. Differential operators. Problems of mathematics education, CMFD, 70, no. 1, PFUR, M., 2024, 77–98
Citation in format AMSBIB
\Bibitem{IvaKosRub24}
\by T.~M.~Ivanova, A.~B.~Kostin, A.~I.~Rubinshtein, V.~B.~Sherstyukov
\paper On limit cycles of autonomous systems
\inbook Functional spaces. Differential operators. Problems of mathematics education
\serial CMFD
\yr 2024
\vol 70
\issue 1
\pages 77--98
\publ PFUR
\publaddr M.
\mathnet{http://mi.mathnet.ru/cmfd530}
\crossref{https://doi.org/10.22363/2413-3639-2024-70-1-77-98}
\edn{https://elibrary.ru/YQTKXF}
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