AbstractThis paper presents a numerical method for solving a class of fractional optimal control problems (FOCPs). The fractional derivative in these problems is in the Caputo sense. The method is based upon the Legendre orthonormal polynomial basis. The operational matrices of fractional Riemann–Liouville integration and multiplication, along with the Lagrange multiplier method for the constrained extremum are considered. By this method, the given optimization problem reduces to the problem of solving a system of algebraic equations. By solving this system, we achieve the solution of the FOCP. Illustrative examples are included to demonstrate the validity and applicability of the new technique
We develop a simple and accurate method to solve fractional variational and fractional optimal contr...
A numerical method for solving a class of fractional optimal control problems (FOCPs) is presented. ...
This paper introduces a generalization of the Fractional Optimal Control Problem (GFOCP). Proposed g...
AbstractThis paper presents a numerical method for solving a class of fractional optimal control pro...
The shifted Legendre orthogonal polynomials are used for the numerical solution of a new formulation...
In this article, a new numerical method is proposed for solving a class of fractional order optimal ...
AbstractIn this paper, the Legendre spectral-collocation method was applied to obtain approximate so...
Abstract: This article presents a general formulation and general numerical scheme for a class of fr...
We introduce a numerical method, based on modified hat functions, for solving a class of fractional ...
In this paper, we focus on alternative Legendre polynomials (ALPs) in fractional calculus area and o...
The shifted Legendre orthogonal polynomials are used for the numerical solution of a new formulation...
AbstractIn this article, we discuss fractional order optimal control problems (FOCPs) and their solu...
This paper presents a new numerical method for a class of fractional optimal control problems (FOCPs...
We present two different approaches for the numerical solution of fractional optimal control problem...
AbstractFractional calculus has been used to model physical and engineering processes that are found...
We develop a simple and accurate method to solve fractional variational and fractional optimal contr...
A numerical method for solving a class of fractional optimal control problems (FOCPs) is presented. ...
This paper introduces a generalization of the Fractional Optimal Control Problem (GFOCP). Proposed g...
AbstractThis paper presents a numerical method for solving a class of fractional optimal control pro...
The shifted Legendre orthogonal polynomials are used for the numerical solution of a new formulation...
In this article, a new numerical method is proposed for solving a class of fractional order optimal ...
AbstractIn this paper, the Legendre spectral-collocation method was applied to obtain approximate so...
Abstract: This article presents a general formulation and general numerical scheme for a class of fr...
We introduce a numerical method, based on modified hat functions, for solving a class of fractional ...
In this paper, we focus on alternative Legendre polynomials (ALPs) in fractional calculus area and o...
The shifted Legendre orthogonal polynomials are used for the numerical solution of a new formulation...
AbstractIn this article, we discuss fractional order optimal control problems (FOCPs) and their solu...
This paper presents a new numerical method for a class of fractional optimal control problems (FOCPs...
We present two different approaches for the numerical solution of fractional optimal control problem...
AbstractFractional calculus has been used to model physical and engineering processes that are found...
We develop a simple and accurate method to solve fractional variational and fractional optimal contr...
A numerical method for solving a class of fractional optimal control problems (FOCPs) is presented. ...
This paper introduces a generalization of the Fractional Optimal Control Problem (GFOCP). Proposed g...