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无穷区间上一类分数阶微分方程正解的显式迭代序列
引用本文:张海燕,李耀红.无穷区间上一类分数阶微分方程正解的显式迭代序列[J].数学研究及应用,2020,40(1):13-25.
作者姓名:张海燕  李耀红
作者单位:宿州学院数学与统计学院, 安徽 宿州 234000; 安徽大学数学科学学院, 安徽 合肥 230601,宿州学院数学与统计学院, 安徽 宿州 234000
基金项目:安徽省高校自然科学基金重点项目(Grant Nos.KJ2017A442; KJ2018A0452; KJ2019A0666), 宿州学院基金(Grant Nos.2016XJGG13; 2019XJZY02; 2019XJSN03).
摘    要:By applying the monotone iterative method,this study develops two explicit monotone iterative sequences for approximating the minimal and maximal positive solutions.At the same time,by applying the Banach fixed-point theory,an explicit iterative sequence and error estimate for approximating the unique positive solution is obtained.Some examples are given to illustrate the application of the results.

关 键 词:monotone  iterative  method  iterative  sequences  fractional  differential  equations  infinite  interval
收稿时间:2018/10/17 0:00:00
修稿时间:2019/4/11 0:00:00

Explicit Iterative Sequences of Positive Solutions for a Class of Fractional Differential Equations on an Infinite Interval
Haiyan ZHANG and Yaohong LI.Explicit Iterative Sequences of Positive Solutions for a Class of Fractional Differential Equations on an Infinite Interval[J].Journal of Mathematical Research with Applications,2020,40(1):13-25.
Authors:Haiyan ZHANG and Yaohong LI
Institution:School of Mathematics and Statistics, Suzhou University, Anhui 234000, P. R. China; School of Mathematics Sciences, Anhui University, Anhui 230601, P. R. China and School of Mathematics and Statistics, Suzhou University, Anhui 234000, P. R. China
Abstract:By applying the monotone iterative method, this study develops two explicit monotone iterative sequences for approximating the minimal and maximal positive solutions. At the same time, by applying the Banach fixed-point theory, an explicit iterative sequence and error estimate for approximating the unique positive solution is obtained. Some examples are given to illustrate the application of the results.
Keywords:monotone iterative method  iterative sequences  fractional differential equations  infinite interval
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