In this paper, an algorithm inspired on the T-Cell model of the immune system is presented, it is used to solve Economic Dis- patch Problems with smooth objective function. The proposed approach is called IA EDP S, which stands for Immune Algorithm for Economic Dispatch Problem for smooth objective function, and it uses as differenti- ation process a redistribution power operator. The proposed approach is validated using five problems taken from the specialized literature. Our results are compared with respect to those obtained by several other approaches.XVI Workshop Agentes y Sistemas Inteligentes (WASI)Red de Universidades con Carreras en Informática (RedUNCI
This paper presents the artificial immune system IA DED (Immune Algorithm Dynamic Economic Dispatch)...
The The dynamic economic dispatch (DED) problem is one of the complex constrained optimization probl...
The dynamic economic dispatch (DED) problem is one of the complex constrained optimization problems ...
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 u...
In this paper, an algorithm inspired on the T- Cell model of the immune system is presented, it is u...
In this paper, an algorithm inspired on the T-Cell model of the immune system is presented, it is us...
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 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...
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...
This paper presents the artificial immune system IA DED (Immune Algorithm Dynamic Economic Dispatch)...
This paper presents the artificial immune system IA DED (Immune Algorithm Dynamic Economic Dispatch)...
The The dynamic economic dispatch (DED) problem is one of the complex constrained optimization probl...
The dynamic economic dispatch (DED) problem is one of the complex constrained optimization problems ...
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 u...
In this paper, an algorithm inspired on the T- Cell model of the immune system is presented, it is u...
In this paper, an algorithm inspired on the T-Cell model of the immune system is presented, it is us...
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 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...
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...
This paper presents the artificial immune system IA DED (Immune Algorithm Dynamic Economic Dispatch)...
This paper presents the artificial immune system IA DED (Immune Algorithm Dynamic Economic Dispatch)...
The The dynamic economic dispatch (DED) problem is one of the complex constrained optimization probl...
The dynamic economic dispatch (DED) problem is one of the complex constrained optimization problems ...