Reconfiguration according to different criteria is an important problem in distribution systems. This paper presents a new method for optimal multi-objective reconfiguration of distribution system based on the Galaxy-based Search Algorithm (GbSA). To avoid the convergence problem, the input and output data are normalized in the same range using fuzzy sets. The main objectives of the proposed algorithm have been considered as power loss reduction, voltage profile improvement and increase of the system load balancing. The proposed technique has been investigated using the IEEE 33-bus test system and a real distribution network i.e. Tai-Power 11.4-kV distribution system. The obtained results revealed the superiority of the proposed fuzzy-GbSA ...
AbstractIn this paper, Galaxy based search algorithm (GbSA) is used to solve multi-objective problem...
Optimal network configuration is one of the effective approaches for power loss reduction of the dis...
In power system electricity delivery, the distribution system has the most electricity loss as the s...
This paper presents a new hybrid method for optimal multi-objective reconfiguration simultaneous det...
Reconfiguration is a valuable technique that can support the distribution grid from different aspect...
Optimal reconfiguration of power distribution systems is a complex combinatorial optimization proble...
Optimal reconfiguration of power distribution systems is a complex combinatorial optimization proble...
Network reconfiguration is a well-known technique for the distribution system to reduce power losses...
Distribution systems can be operated in multiple configurations since they are possible combinations...
This paper presents a hybrid optimal multi-objective reconfiguration method to determine an optimal ...
This paper presents a reconfiguration methodology based on a fuzzy multi-objective approach for achi...
Considering different objectives and using powerful optimization methods in the distribution network...
Increased electric energy demand is the major factor that cracks the researchers to focus on electri...
Network reconfiguration is an effective approach to reduce the power losses in distribution system. ...
This paper presents a new multiobjective Tabu search (NMTS) algorithm to solve a multiobjective fuzz...
AbstractIn this paper, Galaxy based search algorithm (GbSA) is used to solve multi-objective problem...
Optimal network configuration is one of the effective approaches for power loss reduction of the dis...
In power system electricity delivery, the distribution system has the most electricity loss as the s...
This paper presents a new hybrid method for optimal multi-objective reconfiguration simultaneous det...
Reconfiguration is a valuable technique that can support the distribution grid from different aspect...
Optimal reconfiguration of power distribution systems is a complex combinatorial optimization proble...
Optimal reconfiguration of power distribution systems is a complex combinatorial optimization proble...
Network reconfiguration is a well-known technique for the distribution system to reduce power losses...
Distribution systems can be operated in multiple configurations since they are possible combinations...
This paper presents a hybrid optimal multi-objective reconfiguration method to determine an optimal ...
This paper presents a reconfiguration methodology based on a fuzzy multi-objective approach for achi...
Considering different objectives and using powerful optimization methods in the distribution network...
Increased electric energy demand is the major factor that cracks the researchers to focus on electri...
Network reconfiguration is an effective approach to reduce the power losses in distribution system. ...
This paper presents a new multiobjective Tabu search (NMTS) algorithm to solve a multiobjective fuzz...
AbstractIn this paper, Galaxy based search algorithm (GbSA) is used to solve multi-objective problem...
Optimal network configuration is one of the effective approaches for power loss reduction of the dis...
In power system electricity delivery, the distribution system has the most electricity loss as the s...