A Picard-like approach which has been used to solve a class of Volterra integro-differential equations, is extended in this manuscript to solve fuzzy fractional differential equations. Such technique uses quadrature rules and Picard’s iterations in the fuzzy context. In spite of this, it is conceived to become a non-recursive scheme, in terms of operational matrices, in the linear regime. Some properties of the method are thoroughly discussed, and some numerical examples are provided in order to illustrate the effectiveness of the approach
In this paper, we apply the concept of Caputo’s H-differentiability, constructed based on the genera...
We study a fuzzy fractional differential equation (FFDE) and present its solution using Zadeh’s exte...
Copyright 2015 c ⃝ H. Roshanfekr Varazgahi and S. Abbasbandy. This is an open access article distrib...
This paper deals with the numerical solutions of fuzzy fractional differential equations under Caput...
In this paper, the improved Euler method is used for solving hybrid fuzzy fractional differential eq...
In this paper, analytical investigations of linear fractional order fuzzy differential equations are...
This paper deals with the solutions of fuzzy fractional differential equations (FFDEs) under Caputo ...
The objective of this research has been devoted to solve linear fuzzy fractional differential equati...
Many dynamic systems can be modeled by fractional differential equations in which some external para...
The concept of fuzzy fractional di erential equation (FFDE) was introduced by Agar- wal, Lakshmikant...
In this paper, we consider fractional differential equations with the new fractional derivative invo...
This paper focuses on providing a new scheme to find the fuzzy approximate solution of fractional di...
In this paper we study numerical methods for hybrid fuzzy fractional differential equations and the ...
With fractional differential equations (FDEs) rising in popularity and methods for solving them stil...
In this paper, we apply the concept of Caputo’s H-differentiability, constructed based on the genera...
In this paper, we apply the concept of Caputo’s H-differentiability, constructed based on the genera...
We study a fuzzy fractional differential equation (FFDE) and present its solution using Zadeh’s exte...
Copyright 2015 c ⃝ H. Roshanfekr Varazgahi and S. Abbasbandy. This is an open access article distrib...
This paper deals with the numerical solutions of fuzzy fractional differential equations under Caput...
In this paper, the improved Euler method is used for solving hybrid fuzzy fractional differential eq...
In this paper, analytical investigations of linear fractional order fuzzy differential equations are...
This paper deals with the solutions of fuzzy fractional differential equations (FFDEs) under Caputo ...
The objective of this research has been devoted to solve linear fuzzy fractional differential equati...
Many dynamic systems can be modeled by fractional differential equations in which some external para...
The concept of fuzzy fractional di erential equation (FFDE) was introduced by Agar- wal, Lakshmikant...
In this paper, we consider fractional differential equations with the new fractional derivative invo...
This paper focuses on providing a new scheme to find the fuzzy approximate solution of fractional di...
In this paper we study numerical methods for hybrid fuzzy fractional differential equations and the ...
With fractional differential equations (FDEs) rising in popularity and methods for solving them stil...
In this paper, we apply the concept of Caputo’s H-differentiability, constructed based on the genera...
In this paper, we apply the concept of Caputo’s H-differentiability, constructed based on the genera...
We study a fuzzy fractional differential equation (FFDE) and present its solution using Zadeh’s exte...
Copyright 2015 c ⃝ H. Roshanfekr Varazgahi and S. Abbasbandy. This is an open access article distrib...