Artificial bee colony (ABC) algorithm is an optimization algorithm based on the intelligent foraging behavior of honeybee swarm. Optimal reactive power flow (ORPF) based on ABC algorithm to minimize active power loss in power systems is studied in this paper. The advantage of ABC algorithm is that it does not require these parameters, because it is very difficult to determine external parameters such as cross over rate and mutation rate as in case of genetic algorithm and differential evolution. The other advantage is that global search ability of the algorithm is implemented by introducing a neighborhood source production mechanism which is similar to mutation process. Because of these features, ABC algorithm attracts much attention in rec...
ABSTRACT Artificial Bee Colony Algorithm (ABC) is a viable optimization algorithm, ...
In the study multi objective optimum power flow problem is solved through chaotic artificial bee col...
The extensive use of heuristic technique for solving problem given in various field, not the least i...
Refined ABC algorithm (RABC) proposed in this paper to solve the optimal reactive power problem. An ...
This paper proposes an artificial bee colony (ABC) algorithm for solving optimal power flow (OPF) pr...
This paper proposes an artificial bee colony (ABC) algorithm for solving optimal power flow (OPF) pr...
The artificial bee colony (ABC) algorithm is improved to construct a hybrid multi-objective ABC algo...
The artificial bee colony (ABC) algorithm is improved to construct a hybrid multi-objective ABC algo...
Active power loss optimization is one of the important goals in electrical power systems and it is p...
Abstract— In this paper one of the reliable and effective optimization algorithms called "a...
In this paper, Enhanced Artificial Bee Colony (EABC) algorithm is proposed for solving optimal react...
The standard artificial bee colony (ABC) algorithm involves exploration and exploitation processes w...
Optimal reactive power dispatch (ORPD) is an important task for achieving more economical, secure an...
Electrical energy losses are found in any part of the power system. In the power system, it is essen...
Electrical energy losses are found in any part of the power system. In the power system, it is essen...
ABSTRACT Artificial Bee Colony Algorithm (ABC) is a viable optimization algorithm, ...
In the study multi objective optimum power flow problem is solved through chaotic artificial bee col...
The extensive use of heuristic technique for solving problem given in various field, not the least i...
Refined ABC algorithm (RABC) proposed in this paper to solve the optimal reactive power problem. An ...
This paper proposes an artificial bee colony (ABC) algorithm for solving optimal power flow (OPF) pr...
This paper proposes an artificial bee colony (ABC) algorithm for solving optimal power flow (OPF) pr...
The artificial bee colony (ABC) algorithm is improved to construct a hybrid multi-objective ABC algo...
The artificial bee colony (ABC) algorithm is improved to construct a hybrid multi-objective ABC algo...
Active power loss optimization is one of the important goals in electrical power systems and it is p...
Abstract— In this paper one of the reliable and effective optimization algorithms called "a...
In this paper, Enhanced Artificial Bee Colony (EABC) algorithm is proposed for solving optimal react...
The standard artificial bee colony (ABC) algorithm involves exploration and exploitation processes w...
Optimal reactive power dispatch (ORPD) is an important task for achieving more economical, secure an...
Electrical energy losses are found in any part of the power system. In the power system, it is essen...
Electrical energy losses are found in any part of the power system. In the power system, it is essen...
ABSTRACT Artificial Bee Colony Algorithm (ABC) is a viable optimization algorithm, ...
In the study multi objective optimum power flow problem is solved through chaotic artificial bee col...
The extensive use of heuristic technique for solving problem given in various field, not the least i...