The dynamic economic dispatch (DED) problem is one of the complex constrained optimization problems that have nonlinear, con-convex and non-smooth objective functions. The purpose of the DED is to determine the optimal economic operation of the committed units while meeting the load demand. Associated to this constrained problem there exist highly nonlinear and non-convex practical constraints to be satisfied. Therefore, classical and derivative-based methods are likely not to converge to an optimal or near optimal solution to such a dynamic and large-scale problem. In this paper, an Artificial Immune System technique (AIS) is implemented and applied to solve the DED problem considering the transmission power losses and the valve-point eff...
Dynamic economic dispatch (DED) aims to schedule the committed generating units' output active power...
In this paper, we present an algorithm inspired on the T-Cell model of the immune system (i.e., an a...
In this paper, an algorithm inspired on the T- Cell model of the immune system is presented, it is u...
The The dynamic economic dispatch (DED) problem is one of the complex constrained optimization probl...
In this paper, an algorithm inspired on the immune system is presented, IA DED stands for Immune Alg...
In this paper, an algorithm inspired on the immune system is presented, IA DED stands for Immune Alg...
In this paper, an algorithm inspired on the immune system is presented, IA DED stands for Immune Alg...
The objective of dynamic economic dispatch (DED) problem is to determine the generation schedule of ...
In this paper, we propose an artificial immune system called IA DED, which stands for Immune Algorit...
Abstract. This paper presents an Artificial Immune-based optimization tech-nique for solving the eco...
In this paper, a modified artificial bee colony (MABC) algorithm is presented to solve non-convex dy...
In this paper, an algorithm inspired on the T-Cell model of the immune system is presented, it is us...
In this paper, an algorithm inspired on the T-Cell model of the immune system is presented, it is us...
In this paper, an algorithm inspired on the T-Cell model of the immune system is presented, it is us...
Nowaday, the demand of the electrical energy is increased due to increment in loading and it is desi...
Dynamic economic dispatch (DED) aims to schedule the committed generating units' output active power...
In this paper, we present an algorithm inspired on the T-Cell model of the immune system (i.e., an a...
In this paper, an algorithm inspired on the T- Cell model of the immune system is presented, it is u...
The The dynamic economic dispatch (DED) problem is one of the complex constrained optimization probl...
In this paper, an algorithm inspired on the immune system is presented, IA DED stands for Immune Alg...
In this paper, an algorithm inspired on the immune system is presented, IA DED stands for Immune Alg...
In this paper, an algorithm inspired on the immune system is presented, IA DED stands for Immune Alg...
The objective of dynamic economic dispatch (DED) problem is to determine the generation schedule of ...
In this paper, we propose an artificial immune system called IA DED, which stands for Immune Algorit...
Abstract. This paper presents an Artificial Immune-based optimization tech-nique for solving the eco...
In this paper, a modified artificial bee colony (MABC) algorithm is presented to solve non-convex dy...
In this paper, an algorithm inspired on the T-Cell model of the immune system is presented, it is us...
In this paper, an algorithm inspired on the T-Cell model of the immune system is presented, it is us...
In this paper, an algorithm inspired on the T-Cell model of the immune system is presented, it is us...
Nowaday, the demand of the electrical energy is increased due to increment in loading and it is desi...
Dynamic economic dispatch (DED) aims to schedule the committed generating units' output active power...
In this paper, we present an algorithm inspired on the T-Cell model of the immune system (i.e., an a...
In this paper, an algorithm inspired on the T- Cell model of the immune system is presented, it is u...