Investigation of a Nonlinear Coupled (k, ψ)–Hilfer Fractional Differential System with Coupled (k, ψ)–Riemann–Liouville Fractional Integral Boundary Conditions

A. Samadi, S. Ntouyas, B. Ahmad, J. Tariboon
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引用次数: 7

Abstract

This paper is concerned with the existence of solutions for a new boundary value problem of nonlinear coupled (k,ψ)–Hilfer fractional differential equations subject to coupled (k,ψ)–Riemann–Liouville fractional integral boundary conditions. We prove two existence results by applying the Leray–Schauder alternative, and Krasnosel’skiĭ’s fixed-point theorem under different criteria, while the third result, concerning the uniqueness of solutions for the given problem, relies on the Banach’s contraction mapping principle. Examples are included for illustrating the abstract results.
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具有耦合(k, ψ) -Riemann-Liouville分数积分边界条件的非线性耦合(k, ψ) -Hilfer分数阶微分系统的研究
本文讨论了一类新的非线性耦合(k,ψ) -Hilfer分数阶微分方程边值问题解的存在性,这些边值问题满足耦合(k,ψ) -Riemann-Liouville分数阶积分边界条件。在不同的判据下,我们利用Leray-Schauder替代法和Krasnosel’ski’s不动点定理证明了两个存在性结果,而关于给定问题解的唯一性的第三个结果则依赖于Banach的收缩映射原理。举例说明了抽象的结果。
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