OPTIMAL SIZE AND LOCATION OF DG CONSIDERING 3 PV USING BIOGEOGRAPHY OPTIMIZATION ALGORITHM

Опубликовано: 27 Март 2026
на канале: VERILOG COURSE TEAM-ELECTRICAL PROJECTS
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DESIGNDETAILS
Nowadays, the installation of distributed generation sources (DGs) in general and solar photovoltaic distributed generation (PVDG) is common in the distribution network. DG with suitable location and sizing installed in power system can bring different benefits to the system, including reduction of total power losses and improvement of power quality features such as voltage profile. However, the incorrect location and unreasonable sizing of DG units can cause unexpected issues, such as power loss, increase in the power system. Other studies regarding distribution power network have indicated different impacts of DG installations on power systems. For instance, total power loss could be reduced to 13% and could be greatly decreased thanks to the installation of the suitable DG units. Power loss minimization and voltage stability improvement are important requirements in the operation of power systems to avoid economic damage and voltage collapse, respectively.

This Matlab design is based on biogeography-based optimization (BBO) for optimal location and sizing of 3-solar photovoltaic distributed generation (PVDG) units to reduce power losses. The effectiveness of the applied algorithm is validated by testing it on IEEE 33-bus system using Newton Raphson Load flow method.

REFERENCES
Reference Paper-1: Determination of Optimal Location and Sizing of Solar Photovoltaic Distribution Generation Units in Radial Distribution Systems
Author’s Name: Minh Quan Duong, Thai Dinh Pham, Thang Trung Nguyen , Anh Tuan Doan and Hai Van Tran 4
Source: MDPI
Year: 2019

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