This paper presented a hybrid method to find the optimal size of the distributed generation by considering different type of renewable sources in the distribution power system. The proposed method is based on the combination of two methods like the sensitivity analysis and continues power factor method. The simulated method is done on the Matlab environment by applying in the 16-bus distribution system. The result illustrated the accurate and reliable size of the different types of the distributed generation in a power system
Distributed Generators (DG) are relatively small scale generating units that are directly connected ...
The integration of plug-in electric vehicles (PEVs) to the conventional distribution system has had ...
Objective: In this paper, is present a hybrid optimization methodology for the optimal location and ...
This paper proposes analytical expressions for finding optimal size and power factor of four types o...
A Radial Distribution network is important in power system area because of its simple design and red...
This article presents a linear model predicting optimal size of Distributed Generation (DG) that add...
In this paper, a multi-objective analytical method to evaluate the impacts of optimal location and s...
Distributed generation (DG) has increased ever attention in the distribution system from last few ye...
This paper proposes an optimization technique for distributed generation (DG) sizing in power system...
Distributed generation (DG) is a method of generating electricity on a small scale from renewable an...
This paper proposes a method for determining the optimal sites and sizes of multi-type distributed g...
This paper presents novel separate methods for finding optimal locations, sizes of multiple distribu...
In this paper, the approach focused on the variables involved in assessing the quality of a distribu...
The paper develops two new approaches based on alternative analytical expressions to determine the o...
This paper presents the enhancement and impacts of the system losses, voltage profile and cost by us...
Distributed Generators (DG) are relatively small scale generating units that are directly connected ...
The integration of plug-in electric vehicles (PEVs) to the conventional distribution system has had ...
Objective: In this paper, is present a hybrid optimization methodology for the optimal location and ...
This paper proposes analytical expressions for finding optimal size and power factor of four types o...
A Radial Distribution network is important in power system area because of its simple design and red...
This article presents a linear model predicting optimal size of Distributed Generation (DG) that add...
In this paper, a multi-objective analytical method to evaluate the impacts of optimal location and s...
Distributed generation (DG) has increased ever attention in the distribution system from last few ye...
This paper proposes an optimization technique for distributed generation (DG) sizing in power system...
Distributed generation (DG) is a method of generating electricity on a small scale from renewable an...
This paper proposes a method for determining the optimal sites and sizes of multi-type distributed g...
This paper presents novel separate methods for finding optimal locations, sizes of multiple distribu...
In this paper, the approach focused on the variables involved in assessing the quality of a distribu...
The paper develops two new approaches based on alternative analytical expressions to determine the o...
This paper presents the enhancement and impacts of the system losses, voltage profile and cost by us...
Distributed Generators (DG) are relatively small scale generating units that are directly connected ...
The integration of plug-in electric vehicles (PEVs) to the conventional distribution system has had ...
Objective: In this paper, is present a hybrid optimization methodology for the optimal location and ...