The population is speeding up and the demands for electrical energy are clearly increasing, this growth in load leads to higher power loss and Voltage drop. This paper is focused on a method to decrease the power losses and voltage profile improvement. The first suggested technique binary particle swarm optimization BPSO is utilized for solving the problem of the power loss minimization in network distribution. This work based on optimum position and sizing of the distribution generation (DG) units, shunt capacitor (SC) with network reconfiguration is applied to show the improvement of the network distribution efficiency. The MATLAB programming part and software package MATPOWER7 are used to simulate 69-bus and 33-bus test system with three...
Abstract: Algorithms are used to optimize both single and multi-objective system limits. This resear...
Abstract — This paper presents multi-objective function for optimally determining the size and locat...
This work aims at reduction in active and reactive power loss reduction in distribution networks as ...
The population is speeding up and the demands for electrical energy are clearly increasing, this gro...
This paper presents a solution to solve the network reconfiguration, DG coordination (location and s...
This paper presents a solution to solve the network reconfiguration, DG coordination (location and s...
For the purpose of improving the voltage profile and power losses reduction, this paper proposes all...
This paper shows an efficacious approach for the perfect arrangement of a distribution system. To di...
Capacitor Allocation (CA) and Network Reconfiguration (NR) are the traditional methods extensively a...
The utilization of Distributed Generation (DG) sources in Distribution Power system is indeed vital ...
AbstractOptimal placement and optimal sizing of Distributed Generation (DG) for the sake of reductio...
Optimal distribution network reconfiguration (DNR), distributed generations location and sizing (DGs...
The increasing energy demands are stressing the generation and transmission capabilities of the powe...
This paper shows an efficacious approach for the perfect arrangement of a distribution system. To di...
This paper presents three stages of methodology. The first stage is to identify the switching operat...
Abstract: Algorithms are used to optimize both single and multi-objective system limits. This resear...
Abstract — This paper presents multi-objective function for optimally determining the size and locat...
This work aims at reduction in active and reactive power loss reduction in distribution networks as ...
The population is speeding up and the demands for electrical energy are clearly increasing, this gro...
This paper presents a solution to solve the network reconfiguration, DG coordination (location and s...
This paper presents a solution to solve the network reconfiguration, DG coordination (location and s...
For the purpose of improving the voltage profile and power losses reduction, this paper proposes all...
This paper shows an efficacious approach for the perfect arrangement of a distribution system. To di...
Capacitor Allocation (CA) and Network Reconfiguration (NR) are the traditional methods extensively a...
The utilization of Distributed Generation (DG) sources in Distribution Power system is indeed vital ...
AbstractOptimal placement and optimal sizing of Distributed Generation (DG) for the sake of reductio...
Optimal distribution network reconfiguration (DNR), distributed generations location and sizing (DGs...
The increasing energy demands are stressing the generation and transmission capabilities of the powe...
This paper shows an efficacious approach for the perfect arrangement of a distribution system. To di...
This paper presents three stages of methodology. The first stage is to identify the switching operat...
Abstract: Algorithms are used to optimize both single and multi-objective system limits. This resear...
Abstract — This paper presents multi-objective function for optimally determining the size and locat...
This work aims at reduction in active and reactive power loss reduction in distribution networks as ...