On a class of fractional differential equations for mathematical models of dynamic system with memory

Some differential equation with Riemann–Liouville fractional derivatives is considered. The class of these equations are proposed as a model fractional oscillating equation for the description, analysis and investigation of oscillatory processes in dynamic systems with memory. The obtainment such a...

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Main Author: E. N. Ogorodnikov
Format: Article
Language:English
Published: Samara State Technical University 2013-03-01
Series:Vestnik Samarskogo Gosudarstvennogo Tehničeskogo Universiteta. Seriâ: Fiziko-Matematičeskie Nauki
Online Access:http://mi.mathnet.ru/eng/vsgtu1224
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spelling doaj-8b631a000c3a4ef88869d7277e3a1ea62020-11-25T02:43:14ZengSamara State Technical UniversityVestnik Samarskogo Gosudarstvennogo Tehničeskogo Universiteta. Seriâ: Fiziko-Matematičeskie Nauki1991-86152310-70812013-03-011(30)24525210.14498/vsgtu1224 On a class of fractional differential equations for mathematical models of dynamic system with memoryE. N. Ogorodnikov Some differential equation with Riemann–Liouville fractional derivatives is considered. The class of these equations are proposed as a model fractional oscillating equation for the description, analysis and investigation of oscillatory processes in dynamic systems with memory. The obtainment such a kind of equations is based on the hypothesis supposed the existence of the non-ideal viscoelastic connection in the one-dimensional dynamic system, which is associated with the fractional analogy of Zener rheologic model of the viscoelastic body. It's shown, that the initial values problems with Cauchy type conditions is reduced equivalently to the Volterra type integral equations with the differentiable kernels. This circumstance allow to use the method of successive approximation to resolve that integral equations. It's indicated, that such a kind of differential equations may be interesting as mathematical models of nonlinear dynamic systems behavior.http://mi.mathnet.ru/eng/vsgtu1224
collection DOAJ
language English
format Article
sources DOAJ
author E. N. Ogorodnikov
spellingShingle E. N. Ogorodnikov
On a class of fractional differential equations for mathematical models of dynamic system with memory
Vestnik Samarskogo Gosudarstvennogo Tehničeskogo Universiteta. Seriâ: Fiziko-Matematičeskie Nauki
author_facet E. N. Ogorodnikov
author_sort E. N. Ogorodnikov
title On a class of fractional differential equations for mathematical models of dynamic system with memory
title_short On a class of fractional differential equations for mathematical models of dynamic system with memory
title_full On a class of fractional differential equations for mathematical models of dynamic system with memory
title_fullStr On a class of fractional differential equations for mathematical models of dynamic system with memory
title_full_unstemmed On a class of fractional differential equations for mathematical models of dynamic system with memory
title_sort on a class of fractional differential equations for mathematical models of dynamic system with memory
publisher Samara State Technical University
series Vestnik Samarskogo Gosudarstvennogo Tehničeskogo Universiteta. Seriâ: Fiziko-Matematičeskie Nauki
issn 1991-8615
2310-7081
publishDate 2013-03-01
description Some differential equation with Riemann–Liouville fractional derivatives is considered. The class of these equations are proposed as a model fractional oscillating equation for the description, analysis and investigation of oscillatory processes in dynamic systems with memory. The obtainment such a kind of equations is based on the hypothesis supposed the existence of the non-ideal viscoelastic connection in the one-dimensional dynamic system, which is associated with the fractional analogy of Zener rheologic model of the viscoelastic body. It's shown, that the initial values problems with Cauchy type conditions is reduced equivalently to the Volterra type integral equations with the differentiable kernels. This circumstance allow to use the method of successive approximation to resolve that integral equations. It's indicated, that such a kind of differential equations may be interesting as mathematical models of nonlinear dynamic systems behavior.
url http://mi.mathnet.ru/eng/vsgtu1224
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