A new approach for solving the optimal power flow (OPF) problem is established by combining the reduced gradient method and the augmented Lagrangian method with barriers and exploring specific characteristics of the relations between the variables of the OPF problem. Computer simulations on IEEE 14-bus and IEEE 30-bus test systems illustrate the method. (c) 2007 Elsevier Inc. All rights reserved
This paper deals with the Optimal Power Flow (OPF) problem. Two different objective functions namely...
This letter presents an approach for a geometrical solution of an optimal power flow (OPF) problem f...
Modern electric power systems consist of large-scale, highly complex interconnected systems projecte...
A new approach for solving the optimal power flow (OPF) problem is established by combining the redu...
A new approach for solving the optimal power flow (OPF) problem is established by combining the redu...
In this paper is presented a new approach for optimal power flow problem. This approach is based on ...
This paper presents a new approach to solve the Optimal Power Flow problem. This approach considers ...
A new approach called the Modified Barrier Lagrangian Function (MBLF) to solve the Optimal Reactive ...
This paper proposed the Lagrangian optimization model for Optimal Power Flow (OPF) problem. It is de...
A new approach called the Modified Barrier Lagrangian Function (MBLF) to solve the Optimal Reactive ...
This paper presents a new approach to the resolution of the Optimal Power Flow problem. In this appr...
A new approach to solving the Optimal Power Flow problem is described, making use of some recent fin...
ABSTRACT The main objective of this paper is to use of Newton’s method for optimization techniques. ...
The objective of an Optimal Power Flow (OPF) algorithm is to find the steady-state operation point o...
In this paper, we study four equivalent mathematical formulations of the Optimal Power Flow (OPF) pr...
This paper deals with the Optimal Power Flow (OPF) problem. Two different objective functions namely...
This letter presents an approach for a geometrical solution of an optimal power flow (OPF) problem f...
Modern electric power systems consist of large-scale, highly complex interconnected systems projecte...
A new approach for solving the optimal power flow (OPF) problem is established by combining the redu...
A new approach for solving the optimal power flow (OPF) problem is established by combining the redu...
In this paper is presented a new approach for optimal power flow problem. This approach is based on ...
This paper presents a new approach to solve the Optimal Power Flow problem. This approach considers ...
A new approach called the Modified Barrier Lagrangian Function (MBLF) to solve the Optimal Reactive ...
This paper proposed the Lagrangian optimization model for Optimal Power Flow (OPF) problem. It is de...
A new approach called the Modified Barrier Lagrangian Function (MBLF) to solve the Optimal Reactive ...
This paper presents a new approach to the resolution of the Optimal Power Flow problem. In this appr...
A new approach to solving the Optimal Power Flow problem is described, making use of some recent fin...
ABSTRACT The main objective of this paper is to use of Newton’s method for optimization techniques. ...
The objective of an Optimal Power Flow (OPF) algorithm is to find the steady-state operation point o...
In this paper, we study four equivalent mathematical formulations of the Optimal Power Flow (OPF) pr...
This paper deals with the Optimal Power Flow (OPF) problem. Two different objective functions namely...
This letter presents an approach for a geometrical solution of an optimal power flow (OPF) problem f...
Modern electric power systems consist of large-scale, highly complex interconnected systems projecte...