This paper presents the optimal multiple distributed generations (MDGs) installation for improving the voltage profile and minimizing power losses of distribution system using the integrated monte-carlo evolutionary programming (EP). EP was used as the optimization technique while monte carlo simulation is used to find the random number of locations of MDGs. This involved the testing of the proposed technique on IEEE 69-bus distribution test system. It is found that the proposed approach successfully solved the MDGs installation problem by reducing the power losses and improving the minimum voltage of the distribution system
This paper describes the impact of the distribution development in order to identify optimum locatio...
Due to the increasing need for electricity, insertion of distributed generation (DG) into a distribu...
The large amount of Distributed Generation (DG), that will be installed in the near future, drastic...
The increasing electricity demand in transmission system has caused the power transmission system ex...
The increasing electricity demand in transmission system has caused the power transmission system ex...
Installing DG in network system, has supported the distribution system to provide the increasing num...
This paper describes the impact of development distribution in order to identify optimum location a...
Due to the renewed interest in distributed generation (DG), the number of DG units incorporated in d...
Nowadays, the location and sizing of distributed generation (DG) units in power system network are c...
This paper describes the impact of development distribution in order to identify optimum location a...
This paper presents the optimal allocation and sizing of multi distributed generation (DG) units inc...
In recent years, the application of Distributed Generators (DG) is increasingly growing in the power...
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...
Recent changes in the electric utility infrastructure has created opportunity for many technological...
This paper describes the impact of the distribution development in order to identify optimum locatio...
Due to the increasing need for electricity, insertion of distributed generation (DG) into a distribu...
The large amount of Distributed Generation (DG), that will be installed in the near future, drastic...
The increasing electricity demand in transmission system has caused the power transmission system ex...
The increasing electricity demand in transmission system has caused the power transmission system ex...
Installing DG in network system, has supported the distribution system to provide the increasing num...
This paper describes the impact of development distribution in order to identify optimum location a...
Due to the renewed interest in distributed generation (DG), the number of DG units incorporated in d...
Nowadays, the location and sizing of distributed generation (DG) units in power system network are c...
This paper describes the impact of development distribution in order to identify optimum location a...
This paper presents the optimal allocation and sizing of multi distributed generation (DG) units inc...
In recent years, the application of Distributed Generators (DG) is increasingly growing in the power...
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...
Recent changes in the electric utility infrastructure has created opportunity for many technological...
This paper describes the impact of the distribution development in order to identify optimum locatio...
Due to the increasing need for electricity, insertion of distributed generation (DG) into a distribu...
The large amount of Distributed Generation (DG), that will be installed in the near future, drastic...