Due to the renewed interest in distributed generation (DG), the number of DG units incorporated in distribution systems has been rapidly increasing in the past few years. This situation requires new analysis tools for understanding system performance, and taking advantage of the potential benefits of DG. This paper presents an evolutionary multi-objective programming approach to determine the optimal operation of DG in distribution systems. The objectives are the minimization of the system power losses and operation cost of the DG units. The proposed approach also considers the inherent stochasticity of DG technologies powered by renewable resources. Some tests were carried out on the IEEE 34 bus distribution test system showing the robustn...
This paper presents a genetic algorithm (GA) based approach for the solution of the optimal power...
The latest political initiatives on energy saving are forcing distributors to implement actions that...
A distribution generation (DG) multiobjective optimization method based on an improved Pareto evolut...
The engineering aspects of system planning require various objectives to be simultaneously accomplis...
The engineering aspects of system planning require various objectives to be simultaneously accomplis...
This paper presents an evolutionary algorithm for analyzing the best mix of distributed generations ...
Electrical power networks can be improved both technically and economically through the inclusion of...
This paper describes the impact of development distribution in order to identify optimum location a...
This paper presents the optimal multiple distributed generations (MDGs) installation for improving t...
The political initiatives of the last decades on energy saving and the power generation decarbonizat...
The political initiatives of the last decades on energy saving and the power generation decarbonizat...
This paper presents a novel approach to multi-type distributed generation (DG) planning based on the...
For over a decade, distributed generations (DGs) have sufficiently convinced the researchers that th...
The necessity for flexible electric systems, changing regulatory and economic scenarios, energy savi...
The necessity for flexible electric systems, changing regulatory and economic scenarios, energy savi...
This paper presents a genetic algorithm (GA) based approach for the solution of the optimal power...
The latest political initiatives on energy saving are forcing distributors to implement actions that...
A distribution generation (DG) multiobjective optimization method based on an improved Pareto evolut...
The engineering aspects of system planning require various objectives to be simultaneously accomplis...
The engineering aspects of system planning require various objectives to be simultaneously accomplis...
This paper presents an evolutionary algorithm for analyzing the best mix of distributed generations ...
Electrical power networks can be improved both technically and economically through the inclusion of...
This paper describes the impact of development distribution in order to identify optimum location a...
This paper presents the optimal multiple distributed generations (MDGs) installation for improving t...
The political initiatives of the last decades on energy saving and the power generation decarbonizat...
The political initiatives of the last decades on energy saving and the power generation decarbonizat...
This paper presents a novel approach to multi-type distributed generation (DG) planning based on the...
For over a decade, distributed generations (DGs) have sufficiently convinced the researchers that th...
The necessity for flexible electric systems, changing regulatory and economic scenarios, energy savi...
The necessity for flexible electric systems, changing regulatory and economic scenarios, energy savi...
This paper presents a genetic algorithm (GA) based approach for the solution of the optimal power...
The latest political initiatives on energy saving are forcing distributors to implement actions that...
A distribution generation (DG) multiobjective optimization method based on an improved Pareto evolut...